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Voss M., Fontanese J., Munsat T., Ulibarri Z. (2023). Methods for Creating an Ice Target with Dissolved Solids for TOFMS. In preparation.

Ulibarri Z., Fontanese J., Kempf S., and Munsat T. (2023). Measurement of Deuterium-Hydrogen Ratio of Water Ice with Hypervelocity Impact Ionization TOF-MS, In preparation.

Lancaster A., Kempf S. (2023). Cratering studies in Polyvinylidene Fluoride (PVDF) thin films and iridium-coated titanium targets: Implications for cosmic dust detectors.

Madison M. Patch, Sanjana Panchagnula, Helgi R. Hrodmarsson, Daniel B. Rap, Sandra Bruenken, Harold Linnartz, Alexander G. G. M. Tielens, and J. Bouwman Dehydrogenation of anthracene and phenanthrene cations.

L. Nouzák, J. Broulím, J. Fontanese, K. Mašek, M. Horányi, and Z. Sternovsky (2023). Characterizing the Response of Timepix Solid State Detector to Dust Impacts, Icarus, submitted.

E. Opp, H.-W. Hsu, X. Wang, J. Deca and M. Horányi (2023). Electrostatic regolith size-sorting effects on surface spectra of airless bodies, Icarus, under review.

L. Noelle, H.-W. Hsu, et al. (2023). Radial compositional profile of Saturn's E ring indicates substantial space weathering effects. Monthly Notices of the Royal Astronomical Society, under review.

S. Linti, H.-W. Hsu, et al. (2023). Cassini's CDA observes a variety of dust populations just outside Saturn's F ring. Monthly Notices of the Royal Astronomical Society, accepted.

D. Schleier, J. Kamer, J. Martens, G. Berden, J. Oomens, J. Bouwman. Gas-phase mid-infrared spectra of cationic 3-Azafluoranthene and its protonated congener.

M. Horányi, J. Szalay, and X. Wang (2023). The lunar dust environment: concerns for Moon-based astronomy. Philosophical Transactions of the Royal Society A.

M. Horányi, I. Mann (2023). Physics and applications of dusty plasmas: The perspectives 2023. Chapter XII: Space Dusty Plasmas. Physics of Plasmas 30, 120601. PoP Featured Article. https://doi.org/10.1063/5.0168088

William M. Farrell, Jasper S. Halekas, Mihály Horányi, Rosemary M. Killen, Cesare Grava, Jamey R. Szalay, Mehdi Benna, Pamela E. Clark, Michael R. Collier, Anthony Colaprete, Jan Deca, Richard C. Elphic, Shahab Fatemi, Yoshifumi Futaana, Mats Holmström, Dana M. Hurley, Georgiana Y. Kramer, Paul R. Mahaffy, Masaki N. Nishino, Sarah K. Noble, Yoshifumi Saito, Andrew R. Poppe, Kurt D. Retherford, Xu Wang, Shoichiro Yokota (2023). The Dust, Atmosphere, and Plasma at the Moon. Reviews in Mineralogy & Geochemistry 89, 563-609. http://dx.doi.org/10.2138/rmg.2023.89.13

William M. Farrell, Jasper S. Halekas, Mihály Horányi, Rosemary M. Killen, Cesare Grava, Jamey R. Szalay, Mehdi Benna, Pamela E. Clark, Michael R. Collier, Anthony Colaprete, Jan Deca, Richard C. Elphic, Shahab Fatemi, Yoshifumi Futaana, Mats Holmström, Dana M. Hurley, Georgiana Y. Kramer, Paul R. Mahaffy, Masaki N. Nishino, Sarah K. Noble, Yoshifumi Saito, Andrew R. Poppe, Kurt D. Retherford, Xu Wang, Shoichiro Yokota (2023). The Dust, Atmosphere, and Plasma at the Moon. Reviews in Mineralogy & Geochemistry 89, 563-609. http://dx.doi.org/10.2138/rmg.2023.89.13

F. Lavorenti, P. Henri, F. Califano, J. Deca, S. Lindsay, S. Aizawa, and J Benkhoff (2023). Solar-wind electron precipitation on weakly magnetized bodies: The planet Mercury. Astronomy & Astrophysics 674, A153. https://doi.org/10.1051/0004-6361/202245711

L.M. Eckart, J.K. Hillier, F. Postberg, S. Marchi, and Z. Sternovsky (2023). Linking meteorites to their asteroid parent bodies: The capabilities of dust analyzerinstruments during asteroid flybys. Meteoritics & Planetary Science 58(10). https://doi.org/10.1111/maps.14060

Kamer J., Schleier D., Donker M., Hemberger P., Bodi A., Bouwman J. (2023). Threshold Photoelectron Spectrum and Dissociative Photoionization of Benzonitrile. Physical Chemistry Chemical Physics, Advance Article https://doi.org/10.1039/D3CP03977C

Kempf S., Altobelli N., Schmidt J., Cuzzi J., Estrada P., and Srama R., (2023). Micrometeoroid infall onto Saturn's rings constrains their age to no more than a few hundred million years. Science Advances 9(19). https://doi.org/10.1126/sciadv.adf8537

Yeo L.-H., Wang X., Dove A., and Horányi M. (2023). Laboratory Investigations of Triboelectric charging of Dust by Rover Wheels. Advances in Space Research 72(5). https://doi.org/10.1016/j.asr.2023.05.002

Shen, M., Sternovsky, Z., & Malaspina, D. M. (2023). Variability of antenna signals from dust impacts. Journal of Geophysical Research: Space Physics, 128, e2022JA030981. https://doi.org/10.1029/2022JA030981

Tarnecki, L. K., Marshall, R. A., Fontanese, J., Sternovsky, Z., & Munsat, T. (2023). Experimentally derived luminous efficiencies for aluminum and iron at meteoric speeds. Geophysical Research Letters, 50, e2023GL103016. http://doi.org/10.1029/2023GL103016

Bouwman, J., McCabe, M.N., Shingledecker, C.N., Wandishin, J., Jarvis, V., Reusch, E., Hemberger, P. and Bodi, A. (2023). Five-membered ring compounds from the ortho-benzyne + methyl radical reaction under interstellar conditions, Nat Astron. https://doi.org/10.1038/s41550-023-01893-2

Bernardoni E., Horanyi M., and Szalay J.R. (2023). Analyzing LDEX's Current Measurements in Lunar Orbit, The Planetary Sci. J. 4:20. https://doi.org/10.3847/PSJ/aca898

"Hrodmarsson H.R., Bouwman J., Tielens A. G. G. M., Linnartz H. (2023). Fragmentation of the PAH cations of Isoviolanthrene and Dicoronylene: A case made for interstellar cyclo[n]carbons as products of universal fragmentation processes International Journal of Mass Spectrometry, 485, 116996. https://doi.org/10.1016/j.ijms.2022.116996 "


M. Horányi, The Lunar Atmosphere and Dust Environment Explorer (LADEE) Mission. In: Cudnik, B. (eds) Encyclopedia of Lunar Science, Springer, https://doi.org/10. 1007/978-3-319-05546-6 110-1, 2022

C.M. Lisse, G.R. Gladstone, L.A. Young, D.P. Cruikshank, S.A. Sandford, B. Schmitt, S.A. Stern, H.A. Weaver, O. Umurhan, Y.J. Pendleton, J.T. Keane, J.M. Parker, R.P. Binzel, A.M. Earle, M. Horányi, M. El- Maarry, A.F. Cheng, J.M. Moore, W.B. McKinnon, W. M. Grundy, J.J. Kavelaars, I.R. Linscott, W. Lyra, B.L. Lewis, D.T. Britt, J.R. Spencer, C.B. Olkin, R.L. McNutt, H.A. Elliott, N. Dello-Russo, J.K. Steckloff, M. Neveu, and O. Mousis, A Predicted Dearth of Hypervolatile Ices in Oort Cloud Comets, The Planetary Sci. J., 3:112, https://doi.org/10.3847/PSJ/ac6097, 2022

E. Bernardoni, M. Horányi, A. Doner, M. Piquette, J. R. Szalay, A. Poppe, D. James, C. Olkin, K. Singer, J. Spencer, A. Stern and H. Weaver, Student Dust Counter status report: The first 50 AU, The Planetary Sci. J., 3:69, https://doi.org/10.3847/PSJ/ac5ab7, 2022

314, Lauer, T.R., Postman, M., Spencer, J.R., Weaver, H.A., Stern, S.A., Gladstone, G.R., Binzel, R.P., Britt, D.T., Buie, M.W., Buratti, B.J., Cheng, A.F., Grundy, W.M., Horányi, M., Kavelaars, J.J., Linscott, I.R., Lisse, C.M., McKinnon, W.B., McNutt, R.L., Moore, J.M., Nunez, J.I., Olkin, C.B., Parker, J.W., Porter, S.B., Reuter, D.C., Robbins, S.J., Schenk, P.M., Showalter, M.R., Singer, K.N., Verbiscer, A.J., Young, L.A., 2022. Anomalous Flux in the Cosmic Optical Background Detected With New Horizons Observations, The Astrophysical Journal Letters 927, L8, https://doi.org/10.3847/2041-8213/ac573d, 2022

Yeo L.-H., Han J., Wang X., Werner G., Deca J., Munsat T., Horányi M. (2022). Laboratory Simulation of Solar Wind Interaction with Lunar Magnetic Anomalies, J. Geophys. Res. - Space. https://doi.org/10.1029/2021JA029821"

"Pokorný P., Szalay J.R., Horányi M., Kuchner M.J. (2022). Modeling Meteoroid Impacts on the Juno Spacecraft. The Planetary Science Journal , 3(1), 14. https://doi.org/10.3847/PSJ/ac4019"

"Hrodmarsson H.R., Bouwman J., Tielens A. G. G. M., Linnartz H. (2022). Similarities and dissimilarities in the fragmentation of polycyclic aromatic hydrocarbon cations: A case study involving three dibenzopyreneisomers. International Journal of Mass Spectrometry, 476, 116834. https://doi.org/10.1016/j.ijms.2022.116834"

"Schleier D., Hemberger P., Bodi A., Bouwman J. (2022). Threshold Photoelectron Spectroscopy of Quinoxaline, Quinazoline, and Cinnoline. The Journal of Physical Chemistry A 2022 126 (14), 2211-2221. https://doi.org/10.1021/acs.jpca.2c01073"

"Deluca, M., Sternovsky, Z., Armes, S.P., Fielding, L.A., Horányi, M., Janches, D., Kupihar, Z., Munsat, T., Plane, J.M.C. (2022). Differential Ablation of Organic Coatings From Micrometeoroids Simulated in the Laboratory. J. Geophys. Res.:Planets 127. https://doi.org/10.1029/2021je007168"

"Leblanc F., Schmidt C., Mangano V., Mura A., Cremonese G., Raines J.M., Jasinski J.M., Sarantos M., Milillo A., Killen R.M., Cassidy T., Vervack Jr. R.J., Kameda S., M.T. Capria, M. Horányi, D. Janches, A. Berezhnoy, A. Christou, T. Hirai, P. Lierle, J. Morgen-Thaler (2022).Comparative Na and K Mercury and Moon exospheres, Space Sci. Rev., Planetary and Space. Sci., 218. https://doi.org/10.1007/s11214-022-00871-w"

"M. Gerard, J. Deca, M. Horányi (2022). Dust rotation and swirl morphology in lunar magnetic anomalies, Geophys. Res. Lett. https://doi.org/10.1029/2022GL097942"

"Hsu, H.-W., Wang, X., Carroll, A., Hood, N., Horányi, M. (2022). Fine-grained regolith loss on sub-km asteroids. Nature Astronomy. https://doi.org/10.1038/s41550-022-01717-9"

"Kadhane, U.R., Vinitha, M.V., Ramanathan, K., S., A., Bouwman, J., Avaldi, L., Bolognesi, P., Richter, R. (2022). Comprehensive survey of dissociative photoionization of quinoline by PEPICO experiments. J. Chem Phys. 156, 244304. https://doi.org/10.1063/5.0092158"

"Ramanathan, K., S., A., Bouwman, J., Avaldi, L., Vinitha, M.V., Bolognesi, P., Richter, R., Kadhane, U. (2022). Photodissociation of Quinoline Cation: Mapping the Potential Energy Surface, J. Chem. Phys. https://doi.org/10.1063/5.0092161"

"Hunziker S., Moragas-Klostermeyer G., Hillier J.K., Fielding L.A., Hornung K., Lovett J.R., Armes S.P., Fontanese J., James D., Hsu H.-W., Herrmann I., Fechler N., Poch O., Pommerol A., Srama R., Malaspina D., and Sterken V.J. (2022).Impact ionization dust detection with compact, hollow and fluffy dust analogs, Plan. Space Sci. https://doi.org/10.1016/j.pss.2022.105536"

"Barker D.C., Olivas A., Farr B., Wang X., Buhler C.R., Wilson J., and Mai J. (2022). Adhesion of Lunar Simulant Dust to Materials under Simulated Lunar Environment Conditions, Acta Astronautica 199, 25-36. https://doi.org/10.1016/j.actaastro.2022.07.003"

"Yeo L.-H., Hood N., Schwan J., Wang X., and Horányi M. (2022). Dust Mobilization in the Presence of Magnetic Fields, Phys. Rev. E., 106, L013203. https://doi.org/10.1103/PhysRevE.106.L013203"

"Farr B., Wang X., Goree J., Hahn I., Israelsson U., and Horányi M. (2022). Dust removal from a variety of surface materials with multiple electron beams, Acta Astronautica 200, 42-47. https://doi.org/10.1016/j.actaastro.2022.07.047"

"Levin, Z. and Kempf, S. (2022). Simulation of grid morphology's effect on ion optics and the local electric field, AIP Advances 12, 105002. https://doi.org/10.1063/5.0084142"

"Ulibarri, Z., Fontanese J., Horányi M., Kempf S., Munsat T., Sternovsky Z., Voss M. (2022). Detection of the amino acid histidine and its breakup products in hypervelocity impact ice spectra, Icarus, 115319. https://doi.org/10.1016/j.icarus.2022.115319"


B. Goode, S. Kempf, and J. Schmidt. Detecting the surface composition of geological features on Europa and Ganymede using a surface dust analyzer, Planetary and Space Science 208, 105343, https://doi.org/10.1016/j.pss.2021.105343

T. Lauer, A. Stern, and M. Horányi . New Horizons Observations of the Cosmic Optical Background, The Astrophysical Journal 906,77, https://doi.org/10.3847/1538- 4357/abc881, 2021

C. Lisse, A. Stern, and M. Horányi . On the origin and thermal stability of Arrokoths and Plutos ices,Icarus 356,114072, doi:10.1016/j.icarus.2020.114072, 2021

M. Horányi, E. Bernardoni, A. Carroll , Hsiang- Wen Hsu , Sascha Kempf , Petr Pokorný , Zoltan Sternovsky , Jamey R. Szalay , and X. Wang . The Dust Environment of the Moon, in: The Impact of Lunar Dust on Human Exploration, Icarus 356,114072, doi:10.1016/j.icarus.2020.114072, 2021

Ming-Hsueh Shen , Z. Sternovsky, Mihály Horányi , Hsiang-Wen Hsu,and David Malaspina . Antenna signals generated by dust impacts on spacecrafts,JGR-Space 102, https://doi.org/10.1029/2020JA028965, 2021

E. Bernardoni , Mihály Horányi , and J. Szalay . Formation of the Lunar Dust Ejecta Cloud,The Planetary Sci. J. 2, 67, https://doi.org/10.3847/PSJ/abea7c, 2021

D. Janches, A. Berexhnoy, and M. Horányi . Meteoroids as one of the sources for exosphere formation on airless bodies in the inner solar system,,Space Sci. Rev. 217-50, https://doi.org/10.1007/s11214-021-00827-6, 2021

Y. Leo , X. Wang, J. Deca , Hsiang-Wen Hsu,and M. Horányi . Dynamics of Electrostatically Lofted Dust on Airless Planetary Bodies, Icarus 366, 114519, 2021

B. Farr , X. Wang, J. Goree , and M. Horányi . Improvement of the electron-beam lunar dust mitigation technology with varying the beam incident angle, Acta Astronautica 188, 362-366, https://doi.org/10.1016/j.actaastro.2021.07.040, 2021

A. Doner ,M. Horányi, J. Faller, J. Fontanese , and T. Munsat . Restore light transmission of dusty glass surfaces in space, Advances in Space Res. , doi:10.1016/j.asr.2021.07.020, 2021

N. Hood , A. Carroll, X. Wang, and M. Horányi . Laboratory measurements of size distribution of electrostatically lofted dust, Icarus,371, 114684, https://doi.org/10.1016/j.icarus.2021.114684, 2021

J. Deca, A.R. Poppe, A. Divin, B. Lembege. The Plasma Environment Surrounding the Reiner Gamma Magnetic Anomaly. Journal of Geophysical Research: Space Physics, vol. 126, e2021JA029180


M. Piquette, D. James, and M. Horányi, Calibration of Polyvinylidene Fluoride based dust detectors in response to varying grain density and incidence angle, Review of Scientific Instruments 91, 023307, doi: 10.1063/1.5125448

Deca, Jan, D. J. Hemingway, A. Divin, C. Lue, A. R. Poppe, I. Garrick-Bethell, Bertrand Lembege, and M. Horányi. Simulating the Reiner Gamma Swirl: the Long-term Effect of Solar Wind Standoff. Journal of Geophysical Research: Planets e2019JE006219.

L. Nouzak, Z. Sternovsky, M. Horányi, S. Hsu, J. Pavlu, M.-H. Shen, S.-Y. Ye, Magnetic field effect on antenna signals induced by dust particle impacts, J. Geophys. Res. 125, https://doi.org/10.1029/2019JA027245

Samaniego, J. I., X. Wang and S. Robertson (2020). Sheath around a spherical probe in a photoelectron environment, IEEE Trans. Plasma Sci., 10.1109/TPS.2019.2963016.

R. Nerem, D. James, Charged Particle Pickup Tube Detector used in Experimental Applications and Classroom Demonstrations, The Physics Teacher 58(3), 200-203.

Divin, A., Deca, J., Eriksson, A., Henri, P., Lapenta, G., Olshevsky, V. and Markidis, S., A Fully Kinetic Perspective of Electron Acceleration around a Weakly Outgassing Comet. The Astrophysical Journal Letters, 889(2), p.L33.

J. R. Szalay, P. Pokorný, and M. Horányi, Hyperbolic Meteoroids Impacting the Moon, Astrophys. J. Lett. 890, 1, L11, doi: 10.3847/2041-8213/ab7195

Buie, M. W., Porter, S. B., Tamblyn, P., ... Samaniego J. ... and Colas, F. Size and Shape Constraints of (486958) Arrokoth from Stellar Occultations. The Astronomical Journal, 159(4), 130.

S. I. Popel, A P Golub, L M Zelenyi, and M Horányi, Dusty plasmas in the lunar exosphere: Effects of meteoroids, J. Physics 946, 012142, doi:10.1088/1742-6596/946/1/012142

A. Carroll, N. Hood, R. Mike, X. Wang, H.-W. Hsu and M. Horányi, Laboratory measurements of launch velocities of electrostatically lofted dust on airless planetary bodies, Geophys. Res. Lett, (in revision)

Dynamics of Electrostatically Lofted Dust on Airless Planetary Bodies. L. H. Yeo, X. Wang, J. Deca, H.-W. Hsu, M. Horányi. Icarus, vol. 366, 114519.


J. Deca. The Plasma Environment of the Moon, Encyclopedia of Lunar Science, Springer, B. Cudnik (eds), in production, 2019

Samaniego, J. I., Wang, X., Andersson, L., Malaspina, D., Ergun, R. E., and Horányi, M., Investigation of coatings for Langmuir probes: Effect of surface oxidation on photoemission characteristics, Journal of Geophysical Research: Space Physics, 124, 2357?2361. https://doi.org/10.1029/2018JA026127

M. DeLuca, Z. Sternovsky. High-Speed Drag Measurements of Aluminum Particles in Free Molecular Flow. Journal of Geophysical Research: Space Physics, 4(2), 178�9. http://doi.org/10.1029/2019JA026583

A. Gemer, Z. Sternovsky, D. James, M. Horányi, The effect of high-velocity dust particle impacts on microchannel plate (MCP) detectors, Planetary and Space Science. http://doi.org/10.1016/j.pss.2018.12.011

X. Wang, S. Robertson, and M. Horányi, Plasma Sheath Formation at Craters on Airless Bodies, JGR Space Physics, DOI: 10.1029/2018JA026235

Deca, J., Henri, P., Divin, A., Eriksson, A., Galand, M., Beth, A., Ostaszewski K., and Horányi, M. Building a weakly outgassing comet from a generalized Ohm's law. Physical review letters, 123(5), 055101.

S. -Y. Ye, J. Vaverka, L. Nouzak, Z. Sternovsky, A. Zaslavsky, I. Mann, H.-W. Hsu, T. F. Averkamp, A. H. Sulaiman, D. Pisa, J. Pavlu, G. B. Hospodarsky, W. S. Kurth, M. Horányi, Understanding Cassini RPWS Antenna Signals triggered by dust impacts, Geophys. Res. Lett., 46(20), 10941�10950. http://doi.org/10.1029/2019GL084150

Samaniego, J. I. and Wang, X. (2019). Retrieving true plasma characteristics from Langmuir probes immersed in the spacecraft sheath: The Double Hemispherical Probe technique. Journal of Geophysical Research: Space Physics doi:10.1029/2019JA027176.

B. A. Cohen, J.R. Szalay, A.S. Rivkin, J.A. Richardson, R.L. Klima, C.M. Ernst, N.L. Chabot, Z. Sternovsky, and M. Horányi, Using dust shed from asteroids as microsamples to link remote measurements with meteorite classes, Meteoritics and Planetary Science doi: 10.1111/maps.13348, 2019

J. R. Szalay, P. Pokorný, Z. Sternovsky, Z. Kupihar, A. R. Poppe, M. Horányi, Impact Ejecta and Gardening in the Lunar Polar Regions. Journal of Geophysical Research: Planets, 124(1), 143�154. http://doi.org/10.1029/2018JE005756

Sishtla, C. P., Divin, A., Deca, J., Olshevsky, V., and Markidis, S. Electron trapping in the coma of a weakly outgassing comet. Physics of Plasmas, 26(10), 102904.

Jamey R. Szalay, Petr Pokorný , Mihaly Horányi, Diego Janches, Menelaos Sarantos, Ralf Srama, Nicolas Altobelli, Impact Ejecta Environment of an Eccentric Asteroid: 3200 Phaethon, Planetary and Space Sci., 165, 194-204, DOI: 10.1016/j.pss.2018.11.001

Ingrid Mann, Libor Nouzak, Jakub Vaverka, Tarjei Antonsen, �shild Fredriksen, Karine Issautier, David Malaspina, Nicole Meyer-Verne, J. Pavlu, Zoltan Sternovsky, Joan Stude, Shengyi Ye, Arnaud Zaslavsky, Dust observations with antenna measurements and its prospects for observations with Parker Solar Probe and Solar Orbiter., Annales Geophysicae, 37(6), 1121�1140. http://doi.org/10.5194/angeo-37-1121

N. Swarnalingam, D. Janches, J. D. Carrillo-Sanchez, P. Pokorný, J. Plane, Z. Sternovsky, and D. Nesvorny, Modeling the Altitude Distribution of Meteor Head Echoes Observed with HPLA Radars - Implications on the Radar Detectability of Meteoroid Populations, Astronom. J., 157(5), 179. http://doi.org/10.3847/1538-3881/ab0ec6

Barrie, A. C., F. Cipriani, C. P. Escoubet, S. Toledo-Redondo, R. Nakamura, K. Torkar, Z. Sternovsky, S. Elkington, D. Gershman, B. Giles, and C. Schiff, Characterizing Spacecraft Potential Effects on Measured Particle Trajectories, Phys. Plasmas, 26(10), 103504�13. http://doi.org/10.1063/1.5119344

A. C. Barrie, S. Elkington, Z. Sternovsky, D. Smith, B. Giles, and C. Schiff, Wavelet Compression Performance of MMS/FPI Plasma Count Data. Earth and Space Science, 2018EA000430�20. http://doi.org/10.1029/2018EA000430

Pokorný, Petr, Diego Janches, Menelaos Sarantos, Jamey R. Szalay, Mihály Horányi, David Nesvorny, and Marc J. Kuchner. Meteoroids at the Moon: Orbital properties, surface vaporization, and impact ejecta production. Journal of Geophysical Research: Planets 124, no. 3: 752-778

Jared Atkinson, Manika Prasad, Angel Abbud-Madrid, Christopher B. Dreyer, Penetration and relaxation behavior of dry lunar regolith simulants, Icarus 328 82�92, https://doi.org/10.1016/j.icarus.2019.03.009.


J. Fontanese, G. Clark, M. Horányi, and D. James, Microchannel Plate Efficiency to Detect Low Velocity Dust Impacts, JGR: Space Physics.

W. Goode, T. Munsat, D. James, and Z. Ulibarri, Trajectory Measurements for individual dust particles on the Colorado dust accelerator, Nuclear Instruments and Methods in Physics Research.

M. DeLuca, E. Thomas, T. Munsat, Z. Sternovsky, The ionization efficiency of aluminum and iron at meteoric velocities. Planetary and Space Science, 156, 111�116. http://doi.org/10.1016/j.pss.2017.11.003

N. Hood, A. Carroll, R. Mike, X. Wang, J. Schwan, H.-W. Hsu, and M. Horányi, Laboratory Investigation of Electrostatic Dust Lofting Rates on Airless Planetary Bodies, GRL 45(24), 13-206.

E. A. Bernardoni, J. R. Szalay, M. Horányi, Impact Ejecta Plumes at the Moon, Geophys. Res. Lett. 46, 534-543, DOI: 10.1029/2018GL079994, 2019

Joseph I. Samaniego, Xu Wang, Laila Andersson, David Malaspina, Robert E. Ergun, and Mihaly Horányi, Investigation of Coatings for Langmuir Probes in an Oxygen-Rich Space Environment, GRL

L. O'Brien, A. Juhasz, M. Horányi, Z. Sternovsky, Effects of interplanetary coronal mass ejections on the transport of nano-dust generated in the inner solar system. Planetary and Space Science, 156, 7�16. http://doi.org/10.1016/j.pss.2017.11.013

Deca, J., Divin, A., Lue, C., Ahmadi, T., and Horányi, M. Reiner Gamma albedo features reproduced by modeling solar wind standoff. Nature Communications Physics, 1(1), 1-8.

Li, Y., Bugiel, S., Strack, H., Simolka, J., Sternovsky, Z., Kempf, S., M. Horányi, E. Grün, X. Li, R. Srama (2018). Determination of impact position on an impact ionization detector by electrostatic induction. Advances in Space Research, 62(4), 890�895. http://doi.org/10.1016/j.asr.2018.05.026

J. R. Szalay, P. Pokorný , Z. Sternovsky, Z. Kupihar, A. R. Poppe, M. Horányi, Impact Ejecta and Gardening in the Lunar Polar Regions, J. Geophys. Res. Planets, DOI:10.1029/2018JE005756

X. Wang, J. I. Samaniego, H.-W. Hsu, M. Horányi, J.-E. Wahlund, R. E. Ergun, and E. A. Bering, Development of a Double Hemispherical Probe for improved space plasma measurements, Journal of Geophysical Research: Space Physics, 123, 2916�2925. https://doi.org/ 10.1029/2018JA025415

M. Horányi, J. R. Szalay and X. Wang, The Dust Environment of Airless Planetary Bodies, Serendipities in the Solar System and Beyond, 513, 183-191.

Wang, X., Schwan, J., Hood, N., Hsu, H.W., Grün, E., Horányi, M . Experimental Methods of Dust Charging and Mobilization on Surfaces with Exposure to Ultraviolet Radiation or Plasmas. J. Vis. Exp. (134), e57072, doi:10.3791/57072.

L. Nouzak, S. Hsu, D. Malaspina, F. M. Thayer, S.-Y. Ye, J. Pavlu, Z. Nemecek, J. Šafránková, Z. Sternovsky, Laboratory modeling of dust impact detection by the Cassini spacecraft. Planetary and Space Science, 156, 85�91. http://doi.org/10.1016/j.pss.2017.11.014

M. Radisch, F. Kopp, X. Wang, S. Kempf, and M. Horányi, Measurements of the potential profiles of glow discharges using an emissive probe, IEEE Transactions on Plasma Sicence, DOI: 10.1109/TPS.2018.2885297

A. Dove, M. Horányi, S. Robertson, and X. Wang, Laboratory investigation of the effect of surface roughness on photoemission from surfaces in space, Planet. Space Sci., 156, 92-95.

S.-Y. Ye, W. S. Kurth, G. B. Hospodarsky, A. M. Persoon, A. H. Sulaiman, D. A. Gurnett, M. Morooka, J.-E. Wahlund, H. -W. Hsu, Z. Sternovsky, X. Wang, M. Horányi, M. Seiss, R. Srama, Dust Observations by the Radio and Plasma Wave Science instrument during Cassini's Grand Finale, Geophys. Res. Lett. 45, https://doi.org/10.1029/2018GL078059

J. K. Hillier, Z. Sternovsky, S. Kempf, M. Trieloff, M. Guglielmino, F. Postberg, M. Price, Impact ionisation mass spectrometry of platinum-coated olivine and magnesite-dominated cosmic dust analogues. Planetary and Space Science, 156, 96�110. http://doi.org/10.1016/j.pss.2017.10.002

Behar, E., Tabone, B., Saillenfest, M., Henri, P., Deca, J., Lindkvist, J., ... and Nilsson, H. (2018). Solar wind dynamics around a comet-A 2D semi-analytical kinetic model. Astronomy and Astrophysics, 620, A35.

A. C. Barrie, D. da Silva, S. Elkington, Z. Sternovsky, A. C. Rager, D. J. Gershman, W. R. Paterson, J. C. Dorelli, and B. Giles, Physically Accurate Large Dynamic Range Pseudo Moments for the MMS Fast Plasma Investigation. Physically accurate large dynamic range pseudo moments for the MMS fast plasma investigation. Earth and Space Sci. 5, 503�515, https://doi.org/10.1029/2018EA000407

C. B. Dreyer, A. Abbud-Madrid, J. Atkinson, A. Lampe, T. Markley, H. Williams, K. McDonough, T. Canney, and J. Haines, (submitted), A New Experimental Capability for the Study of Regolith Surface Physical Properties to Support Science, Space Exploration, and In Situ Resource Utilization (ISRU), Review of Scientific Instruments

D.J. McComas, E.R. Christian, N.A. Schwadron, N. Fox, J. Westlake, F. Allegrini, D.N. Baker, D. Biesecker, M. Bzowski, G. Clark, C.M.S. Cohen, I. Cohen, M.A. Dayeh, R. Decker, G.A. de Nolfo, M.I. Desai, R.W. Ebert, H.A. Elliott, H. Fahr, P.C. Frisch, H.O. Funsten, S.A Fuselier, A. Galli, A.B. Galvin, J. Giacalone, M. Gkioulidou, F. Guo, M. Horányi, P. Isenberg, P. Janzen, L.M. Kistler, K. Korreck, M.A. Kubiak, H. Kucharek, B.A. Larsen, R.A. Leske, N. Lugaz, J. Luhmann, W. Matthaeus, D. Mitchell, E. Moebius, K. Ogasawara, D.B. Reisenfeld, J.D. Richardson, C.T. Russell, J.M. Sokół, H.E. Spence, R. Skoug, Z. Sternovsky, P. Swaczyna, J.R. Szalay, M. Tokumaru, M.E. Wiedenbeck, P. Wurz, G.P. Zank, E.J. Zirnstein, (2018). Interstellar Mapping and Acceleration Probe (IMAP): A New NASA Mission. Space Science Reviews, 214(8), 27�54. http://doi.org/10.1007/s11214-018-0550-1.


J. Deca, The Plasma Environment of the Moon, book chapter in the Encyclopedia of Lunar Science, eds: B. Cudnik, Springer.

J. Deca, Andrey Divin, Pierre Henri, Anders Eriksson, Stefano Markidis, Vyacheslav Olshevsky, and Mihaly Horányi, Electron and Ion Dynamics of the Solar Wind Interaction with a Weakly Outgassing Comet, Phys. Rev. Lett. 118(20), 205101

Michael DeLuca, E. Thomas, Z. Sternovsky, The ionization efficiency of aluminum and iron at meteoric velocities, Planet. Space Sci. 156, 111-116.

Diego Janches, Petr Pokorný, Menelaos Sarantos, Jamey R. Szalay, Mihaly Horányi, and David Nesvorny, Constraining the ratio of micrometeoroids from Short and Long Period Comets at 1 AU from LADEE observations of the Lunar Dust Cloud, GRL 45(4), 1713-1722.

A. Dove, M. Horányi, S. Robertson, X. Wang, Laboratory Investigation of the Effect of Surface Roughness on Photoemission from Surfaces in Space, Planetary and Space Sci. 156, 92-95.

Marc Fries, Paul Abell, Julie Brisset, Daniel Britt, Joshua Colwell, Adrienne Dove, Dan Durda, Lee Graham, Christine Hartzell, Kenneth Hrovat, Kristen John, Dakotah Karrer, Matthew Leonard, Stanley Love, Joseph Morgan, Jayme Poppin, Vincent Rodriguez, Paul S'anchez-Lana, Dan Scheeres and Akbar Whizin, The Strata-Experiment on Small Body Regolith Segregation, Acta Astronautica 142, 87-94.

Y. Futaana, S. Barabash, M. Wieser, P. Wurz, D. Hurley, M. Horányi, U. Mall, N. Andre, N. Ivchenko, J. Oberst, K. Retherford, A. Coates, A. Masters, J.E. Wahlund, E. Kallio, The SELMA mission: Investigating the lunar environment and surface interactions, Planetary and Space Sci. 156, 23-40.

Jonathan Hillier, Zoltan Sternovsky, Sascha Kempf, Mario Trieloff, Massimo Guglielmino, Frank Postberg, Mark Price, (in press), Impact Ionisation Mass Spectrometry of Platinum-coated Olivine and Magnezite-dominated Cosmic Dust Analogues, Planet. Space Sci.

M. Horányi, J. R. Szalay, and X. Wang, The Dust Environment of Airless Planetary Bodies, Journal of Geophysical Research (Planets), 119, 2548-2567.

L. Nouzak, S. Hsu, D. Malaspina, F. M. Thayer, S.-Y. Ye, J. Pavlu, Z. Nemecek, J. Safrankova, Z. Sternovsky, Laboratory modeling of dust impact detection by the Cassini spacecraft, Planet. Space Sci. 156, 85-91.

Leela O'Brien, A. Juhasz, and Z. Sternovsky, Effects of Interplanetary Mass Ejections on the Transport of Nano-Dust Generated in the Inner Solar System, Planet. Space Sci. 156, 7-16.

E. O'Shea, Z. Sternovsky, and D. M. Malaspina, Interpreting Dust Impact Signals Detected by the STEREO Spacecraft, J. Geophys. Res. Space Phys., 1-10. http://doi.org/10.1002/2017JA024786

M. Piquette, M. Horányi, The effect of asymmetric surface topography on dust dynamics on airless bodies, Icarus, 291, 65-74, doi:10.1016/j.icarus.2017.03.019.

M. Piquette, M. Horányi, A. Stern, Laboratory experiments to investigate sublimation rates of water ice in nighttime lunar regolith, Icarus, 291, 65-74, doi:10.1016/j.icarus.2017.04.017.

S. I. Popel, A. P. Golub, L. M. Zelenyi, and M. Horányi, Impacts of Fast Meteoroids and a Plasma-Dust Cloud over the Lunar Surface, Astrophysics and Cosmology, JETP Letters, 105, No. 10, 635-640.

D.J. Scheeres, Constraints on Bounded Motion and Mutual Escape for the Full 3-Body Problem, Celestial Mechanics and Dynamical Astronomy 128(2-3): 131-148.

D.J. Scheeres, Disaggregation of Small, Cohesive Rubble Pile Asteroids due to YORP, Icarus 304, 183-191.

J. R. Szalay, M. Horányi, Activity of the 2013 Geminid meteoroid shower at the Moon, MNRAS 474(3), 4225-4231.

J. R. Szalay, A. R. Poppe, J. Agarwal, D. Britt, I. Belskaya, M. Horányi, T. Nakamura, M. Sachse, F. Spahn, (submitted), Dust Phenomena Relating to Airless Bodies, Space Science Reviews.

S. Tardivel, P. S'anchez and D.J. Scheeres, Equatorial cavities on asteroids, an evidence of fission events, Icarus 304, 192-208.

E. Thomas, J. Simolka, M. DeLuca, M. Horányi, D. Janches, R. A. Marshall, T. Munsat, J.M.C. Plane, and Z. Sternovsky, Experimental setup for the laboratory investigation of micrometeoroid ablation using a dust accelerator, Rev. Sci. Instrum., 88, 034501 doi: http://dx.doi.org/10.1063/1.4977832

Z. Ulibarri, J. Han, M. Horányi, T. Munsat, X. Wang, G. Whittall-Scherfee, L. Yeo. A large ion beam device for laboratory solar wind studies, Rev. Sci. Instrum., 88, 115112 doi: https://doi.org/10.1063/1.5011785

S. Van wal and D.J. Scheeres, The Lift-Off Velocity on Solar System Small Bodies, Journal of Guidance, Control, and Dynamics, 40(8): 1990-2005. http://dx.doi.org/10.2514/1.G002337

S. Van wal, S. Tardivel and D.J. Scheeres, Parametric Study of Ballistic Lander De- ployment to Small Bodies, Journal of Spacecraft and Rockets 54(6), 1330-1355.

S. Van wal, S. Tardivel, P. S'anchez, D. Djafari-Rouhani and D.J. Scheeres, Rolling resistance of a spherical pod on a granular bed, Granular Matter 19:17. DOI 10.1007/s10035-016-0696.

J. J. Walker, J. S. Halekas, M. Horányi, J. R. Szalay, and A. R. Poppe, Evidence for Detection of Energetic Neutral Atoms by LADEE, Planetary and Space Science, 139, 31-36.

X. Wang, J. I. Samaniego-Evans, H.-W. Hsu, M. Horányi, J.-E. Wahlund, and R. E. Ergun, (submotted), Development of a Double Hemispherical Probe (DHP) for Improved Space Plasma Measurements, JGR Space Physics.

X. Wang, J. Schwan, N. Hood, H. -W. Hsu, E. Grun, and M. Horányi, (in press), Dust charging and mobilization experiments on surfaces exposed to ultraviolet radiation or plasmas, Journal of Visualized Experiments.


R. Beadles, X. Wang, and M. Horányi, (submitted), Experimental measurements for the floating potentials of dust and spacecraft in a plasma, GRL.

J. Deca and A. Divin, (2016), Reflected Charged Particle Populations around Dipolar Lunar Magnetic Anomalies, APJ, 829, Issue 2, 60, 8.

J. Deca, A. Divin, X. Wang, B. Lembège, S. Markidis, M. Horányi, G. Lapenta, (2016), Three-dimensional full-kinetic simulation of the solar wind interaction with a vertical dipolar lunar magnetic anomaly, Geophys. Res. Lett., 43, 9, 4136 - 4144

A. O. Nelson, R. Dee, M. S. Gudipati, M. Horányi, D. James, S. Kempf, T. Munsat, Z. Sternovksy, Z. Ulibarri, (2016), New experimental capability to investigate the hypervelocity micrometeoroid bombardment of cryogenic surfaces, Rev. Sci. Instrum., 87, 024502

J. Noonan, E. Schindhelm, J. W. Parker, A. Steffl, M. Davis, S. A. Stern, Z. Levin, S. Kempf, M. Horányi, (2016), An investigation into potential causes of the anomalistic feature observed by the Rosetta Alice spectrograph around 67P/Churyumov-Gerasimenko, Acta Astronautica

V. Olshevsky, J. Deca, A. Divin, I. B. Peng, S. Markidis, M. E. Innocenti, Em Cazzola, G. Lapenta, (2016), Magnetic null Points in kinetic simulations of space plasmas, Astrphys. J. 819, 1

A. R. Poppe, J. S. Halekas, J. R. Szalay, M. Horányi, Z. Levin, S. Kempf, (2016), LADEE/LDEX observations of lunar pickup ion distribution and variability, Geophys. Res. Lett., 43, 3069-3077, doi: 10.1002/2016GL068393.

F. M. Thayer, D. M. Malaspina, A. Collette, Z. Sternovsky, (2016), Variation in Relative Dust Impact Charge Recollection with Antenna to Spacecraft Potential on STEREO, J. Geophys. Res., 121, 4998-5004.

J. Schwan, X. Wang, H. -W. Hsu, E. Grun, and M. Horányi, (submitted), Experimental measurements of large negatively charged dust particles from electron-emitting dusty surfaces, Phys. Rev. Lett.

J. R. Szalay, M. Horányi, (2016), Lunar Meteoritic Gardening Rate Derived from In-Situ LADEE/LDEX Measurements, GRL, 43, doi:10.1002/2016GL069148.

J. R. Szalay, M. Horányi, (2016), Impact Ejecta Environment of Near Earth Asteroids, APJ Letters, 830, L29 - 34.

J. R. Szalay, M. Horányi, (2016), Annual Variation and Synodic Modulation of the Sporadic Meteoroid Flux to the Moon, GRL, doi:10.1002/2015GL066908.

J. R. Szalay, M. Horányi, A. Colaprete, and M. Sarantos, (2016), Meteoritic Influence on Sodium and Potassium Abundance in the Lunar Exosphere, GRL, 43, pp. 6096-6102, doi: 10.1002/2016GL069541.

E. Thomas, M. Horányi, D. Janches, T. Munsat, J. Simolka, Z. Sternovsky, (submitted, 2015), Measurement of the ionization coefficient of simulated iron micrometeoroids, Geophys. Res. Lett.

Z. Wang, Q. Liu, W. Waganaar, J. Fontanese, D. James, and T. Munsat, (2016), Four-dimensional (4D) tracking of high-temperature micro particles, Rev. Sci. Instrum., 87, 11D601

X. Wang, J. Schwan, H.-W. Hsu, E. Grün, and M. Horányi, (2016), Dust charging and transport on airless planetary bodies, Geophys. Res. Lett., 43, 12, 6103-6110.

Zimmerman, M. I., W. M. Farrell, C. M. Hartzell, X. Wang, M. Horányi, D. M. Hurley, and K. Hibbits, (2016), Grain-scale supercharging and breakdown on airless regoliths, J. Geophys. Res. Planets, 121, doi:10.1002/2016JE005049.


L. Andersson, T. D. Weber, D. Malaspina, F. Crary, R. E. Ergun, G. T. Delory, C. M. Fowler, M. W. Morooka, T. McEnulty, A. I. Eriksson, D. J. Andrews, M. Horányi, A. Collette, R. Yelle, B. M. Jakosky, Dust Observations at Orbital Altitudes Surrounding of Mars, Science, 350, 398-1, 2015.

A. Collette, G. Meyer, D. Malaspina, Z. Sternovsky, Laboratory Investigation of Antenna Signals from Dust Impacts on Spacecraft, J. Geophys. Res., 120, 5298-5305

J. Deca, A. Divin, B. Lembege, M. Horányi, S. Markidis, G. Lapenta, General Mechanism and Dynamics of the Solar Wind Interaction with Lunar Magnetic Anomalies from 3-D PIC Simulations, J. Geophys. Res., 120, doi:10.1002/2015JA021070

M. Horányi, J. Szalay, S. Kempf, J. Schmidt, E. Grün, R. Srama, Z. Sternovsky, Detecting a permanent dust cloud engulfing the Moon, Nature 255, 324 - 326, doi:10.1038/nature14479

C. T. Howes, X. Wang, J. Deca, and M. Horányi, (2015), Laboratory investigation of lunar surface electric potentials in magnetic anomaly regions, Geophys. Res. Lett. 42, 4280-4287, doi:10.1002/2015GL063943

H.-W. Hsu, F. Postberg, Y. Sekine, T. Shibuya, S. Kempf, M. Horányi, A. Juhász, N. Altobelli, K. Suzuki, Y. Masaki, (2015), Ongoing hydrothermal activities within Enceladus, Nature, 519(7542), 207-210

S. Kempf, A. Cruz, M. Horányi, R. Srama, On the response of PVDF dust detectors to oblique impacts, Panetary Space Sci.

W. Y. Li, Bugiel S., Trieloff M., Hillier J. K., Postberg F., Price M. C., Shu A., Fiege K., Fielding L. A., Armes S. P., Wu Y. Y., Grun E., Srama R., (2015), Morphology of craters generated by hypervelocity impacts of micron-sized polypyrrole-coated olivine particles, Meteoritics & Planetary Science, 49, 8, 1375-1387, DOI: 10.1111/maps.12338

Malaspina, D. M., L. E. O'Brien, F. Thayer, Z. Sternovsky, and A. Collette, (2015), Revisiting STEREO interplanetary and interstellar dust flux and mass estimates, J. Geophys. Res. Space Physics, 120, 6085-6100.

L. O'Brien, E. Grun, Z. Sternovsky, Optimization of the Nano-Dust Analyzer for Operation Under Solar UV Illumination, Planetary Space Sci..

M. Sachse, J. Schmidt, S. Kempf, and F. Spahn, (2015), Correlation between speed and size for ejecta from hypervelocity impacts, J. Geophys. Res. 120(11), 1847-1858, http://doi.org/10.1002/2015JE004844.

B. S. Southworth, S. Kempf, and J. Schmidt, (2015), Modeling Europa's dust plumes, Geophys. Res. Lett., 42, 10,541-10,548, doi:10.1002/2015GL066502.

J. R. Szalay, M. Horányi, (2015), The Search for Electrostatically Lofted Grains Above the Moon with the Lunar Dust Experiment, Geophys. Res. Lett. 42, 5141-5146

J. R. Szalay, M. Horányi, (2015), Detecting Meteoroid Streams with an In-Situ Dust Detector above an Airless Body, Icarus, 275, 221-231, doi:10.1016/j.icarus.2016.04.024.

X. Wang, H. -W. Hsu and M. Horányi, (2015), Identification of Langmuir probe in the sheath of spacecraft: The effect of secondary electron emission from the probe, J. Geophys. Res. 20, 2428-2437, doi:10.1002/2014JA020624

X. Wang, J. Pilewskie, H.-W. Hsu, and M. Horányi, (submitted, 2015), Plasma potential in the sheaths above an electron-emitting surface, Geophys. Res. Lett.

S. R. Wood, D. M. Malaspina, L. Andersson, and M. Horányi, (2015), Hypervelocity Dust Impacts on the Wind Spacecraft: Correlations between Ulysses and Wind Interstellar Dust Detections, J. Geophys. Res.: Space, 120, doi:10.1002/2015JA021463


A. Collette, E. Grun, D. Malaspina, Z. Sternovsky, (2014), Micrometeoroid Impact-Charge Yield for Common Spacecraft Materials, J. Geophys. Res., 119, 6019-6026

A. Collette, Z. Sternovsky, M. Horányi, (2014), Production of neutral gas by micrometeoroid impacts, Icarus, 227, 89-93

J. Deca, A. Divin, G. Lapenta, B. Lembege, S. Markidis, M. Horányi, (2014), Electro-magnetic particle-in-cell simulations of the solar wind interaction with lunar magnetic anomalies, Phys. Rev. Lett., 112, 151102

R. C. Elphic, G. T. Delory, B. P. Hine, P. R. Mahaffy, M. Horányi, A. Colaprete, M. Benna, S. K. Noble, The LADEE Team, (2014), The Lunar Atmosphere and Dust Environment Explorer Mission. Space Sci. Rev., 185, 3 - 25

J. K. Hillier, Z. Sternovsky, S. P. Armes, L. A. Fielding, F. Postberg, S. Bugiel, K. Drake, R. Srama, A. T. Kearsley, M. Trieloff, (2014), Impact ionisation mass spectrometry of polypyrrole-coated pyrrhotite microparticles. Planet Space Sci., 97, 9 - 22

M. Horányi, Z. Sternovsky, M. Lankton, C. Dumont, S. Gagnard, D. Gathright, E. Grün, D. Hansen, D. James, S. Kempf, B. Lamprecht, R. Srama, J. R. Szalay, G. Wright, (2014) The Lunar Dust Experiment (LDEX) onboard the Lunar Atmosphere and Dust Environment Explorer (LADEE) Mission, Space. Sci. Rev., 185, 93 -113

Y. Li, R. Srama, H. Henkel, S. Sternovsky, S. Kempf, Y. Wu, Grün, (2014), Instrument study of the Lunar Dust eXplorer (LDX) for a lunar lander mission, Adv. Space Res.: Lunar Science and Exploration 54, 2094 - 2100

D. Malaspina, M. Horányi, A. Zaslavsky, P. J. Kellogg, K. Goetz, L. B. Wilson III, K. Kersten, (2014), Interplanetary and interstellar dust observed by the Wind/WAVES electric field antennas, Geophys. Res. Lett., 41, 266-272

D.A. Mendis and M. Horányi, (2014), The Global Morphology of the Solar Wind Interaction with Comet Churyumov-Gerasimenko, Astrophys. J., 794, 14 - 21

L. O'Brien, S. Auer, A. Gemer, E. Grün, M. Horányi, A. Juhasz, S. Kempf, D. Malaspina, A. Mocker, E. Moebius, R. Srama, Z. Sternovsky, (2014), Development of a nano-dust analyzer (NDA) for detection and compositional analysis of nanometer-size dust particles originating in the inner heliosphere, Rev. Sci. Inst., 85, 1-13, doi:10.1063/1.4868506

S. Robertson, S. Dickson, M. Horányi, Z. Sternovsky, M. Friedrich, D. Janches, L. Megner, B. Williams, (2014), Detection of meteoric smoke particles in the mesosphere by a rocket-borne mass spectrometer, J. Atmospheric Sol.-Terr. Phys., 161 - 179

A. P. Rasca, M. Horányi, R. Oran, B. Van der Holst, (2014), Modeling solar wind mass-loading in the vicinity of the Sun using 3D MHD simulations, J. Geophys. Res.: Space Physics, 119, 1-8, doi:10.1002/2013JA019365

Z. Sternovsky, S. Robertson, S. Dickson, J. Gumbel, J. Hedin, B. Strelnikov, H. Asmus, O. Havnes, (2014), In-situ detection of noctilucent cloud particles by the Colorado Dust Detectors onboard the PHOCUS sounding rocket, J. Atmospheric Sol.-Terr. Phys., 145 - 150

X. Wang, D. Malaspina, E. Ergun, M. Horányi, (2014), Photoelectron-mediated spacecraft potential fluctuations, J. Geophys. Res., 119, 1024-1101

X. Wang, D. M. Malaspina, H.-W. Hsu, R. E. Ergun, and M. Horányi, (2014), Effect of magnetic field on photoelectron-mediated spacecraft potential fluctuations, J. Geophys. Res. 119, 7319-7326

A. Zakharov, M. Horányi, P. Lee, O. Witasee, F. Cipriani, (2014), Dust at the Martian moons, Planetary Space Sci., 102, 171-175


A. Collette, K. Drake, A. Mocker, Z. Sternovsky, T. Munsat, M. Horányi, (2013), Time-resolved temperature measurements in hypervelocity dust impact, Planetary and Space Science, 89, 58-62

E. Grün, M. Horányi, (2013), A new look at Apollo 17 LEAM data: Nighttime dust activity in 1976, Planetary and Space Science, 89, 2-14, ISSN 0032-0633

C. M. Hartzell, X. Wang, D. J. Scheeres, M. Horányi, (2013), Experimental demonstration of the role of cohesion in electrostatic dust lofting, GeoPhys. Res. Lett., 40, doi:10.1002/grl.50230

M. Horányi, A. Stern, (2013), Editorial in Planetary and Space Science, 89, 1, ISSN 0032-0633

A. Mocker, K. Hornung, E. Grün, S. Kempf, A. Collette, K. Drake, M. Horányi, T. Munsat, L. O'Brien, Z. Sternovsky, R. Srama, (2013), On the application of a linear time-of-flight mass spectrometer for the investigation of hypervelocity impacts of micron and sub-micron sized dust particles, Planetary and Space Science, 89, 47-57, ISSN 0032-0633

A. Shu, S. Bugiel, E. Grün, J. Hillier, M. Horányi, T. Munsat, Ralf Srama, (2013) Cratering studies in Polyvinylidene Fluoride (PVDF) thin films, Planetary and Space Science, 89, 29-35, ISSN 0032-0633

E. Thomas, S. Auer, K. Drake, M. Horányi, T. Munsat, A. Shu, (2013), FPGA cross-correlation filters for real-time dust detection and selection, Planetary and Space Science, 89, 71-76, ISSN 0032-0633

X. Wang, C. T. Howes, M. Horányi, S. Robertson, (2013), Electric potentials in magnetic dipole fields normal and oblique to a surface in plasma: Understanding the solar wind interaction with lunar magnetic anomalies, Geophys. Res. Lett., 40, doi:10.1002/grl.50367

X. Wang, C. T. Howes, M. Horányi, S. Robertson, (2013), Effect of filament supports on emissive probe measurements, Rev. Sci. Instrum., 84, 013506

J. Xie, Z. Sternovsky, S. Auer, K. Drake, E. Grün, M. Horányi, H. Le, R. Srama, (2013), Laboratory testing and data analysis of the Electrostatic Lunar Dust Analyzer (ELDA) instrument, Planetary and Space Science, 89, 63-70, ISSN 0032-0633


A. Dove, M. Horányi, X. Wang, M. Piquette, A. R. Poppe, and S. Robertson, (2012), Experimental study of a photoelectron sheath, Phys. Plasmas, 19, 043502

E. Grün, Z. Sternovsky, M. Horányi, V. Hoxie, S. Robertson, J. Xie,S. Auer, M. Landgraf, F. Postberg, R. Srama, N. Starkey, J. Hillier, M.C. Price, I. A. Franchi, P. Tsou, A. Westphal, and Z. Gainsforth,(2012), Active Cosmic Dust Collector, Planetary and Space Science, 60, 261-273

J. S. Halekas, A. R. Poppe, G. T. Delory, W. M. Farrell, and M. Horányi, (2012), Solar Wind Electron Interaction with the Dayside Lunar Surface and Crustal Magnetic Fields: Evidence for Precursor Effects, Earth, Moon and Planets,64, 7382

H.-W. Hsu, M. Horányi, (2012), Ballistic motion of dust particles in the Lunar Roving Vehicle dust trails, Am. J. Phys., 80.5: 452

P. Northway, S. Auer, K. Drake, M. Horányi, A. Mocker, T. Munsat, A. Shu, Z. Sternovsky, E. Thomas, J. Xie, (2012), Characteristics of a new dust coordinate sensor, Measurement Science and Technology, 23, 105902

A. R. Poppe, M. Piquette, A. Likhanskii, M. Horányi, (2012), The Effect of Surface Topography on the Lunar Photoelectron Sheath and Electrostatic Dust Transport, Icarus, 221, 134-146

A. Shu, A. Collette, K. Drake, E. Grün,M. Horányi, S. Kempf, A. Mocker, T. Munsat, P. Northway, R. Srama, Z. Sternovsky, and E. Thomas, (2012), 3 MV hypervelocity dust accelerator at the Colorado Center for Lunar Dust and Atmospheric Studies, Rev. Sci. Instruments, 83, 075108

X. Wang, M. Horányi, and S. Robertson, (2012), Characteristics of a plasma sheath in a magnetic dipole field: implications to the solar wind interaction with the lunar magnetic anomalies, J. Geophys. Res, 117, A06226

X. Wang, C. T. Howes,M. Horányi, and S. Robertson, (2012), Effect of Filament Supports on Emissive Probe Measurements, Rev. Sci. Instruments, in press;


A. Dove, G. Devaud, X. Wang, M. Crowder, A. Lawitzke and C. Haley, (2011), Mitigation of lunar dust adhesion by surface modification, Planetary and Space Science, 59, 1784-1790

E. Grün, M. Horányi, and Z. Sternovsky, (2011), The lunar dust environment, Planetary and Space Science, 59, 1672-1680

D. Han, A. R. Poppe, M. Piquette, E. Grün, and M. Horányi, (2011), Constraints on dust production in the Edgeworth-Kuiper Belt from Pioneer 10 and New Horizons measurements, Geophys. Res. Lett., 38, L24102

A. R. Poppe, D. James, and M. Horányi, (2011), Measurements of the Terrestrial Dust Influx Variability by the Cosmic Dust Experiment, Planetary and Space Science, 59, 319-326

A. R. Poppe, J. S. Halekas, and M. Horányi, (2011), Negative potentials above the day-side lunar surface in the terrestrial plasma sheet: evidence of non-monotonic potentials, Geophys. Res. Lett., 38, L02103

F. Postberg, E. Grün, M. Horányi, S. Kempf, H. Krüger, J. Schmidt, F. Spahn, R. Srama, Z. Sternovsky, and M Trieloff, (2011), Compositional mapping of planetary moons by mass spectrometry of dust ejecta, Planetary and Space Science, 59, 1815-1825

X. Wang, M. Horányi, and S. Robertson, (2011), Dust transport on a surface in plasma, IEEE Transactions on Plasma Science, 39, 2730-2731

X. Wang, M. Horányi, and S. Robertson, (2011), Dust transport near electron beam impact and shadow boundaries, Planetary and Space Science, 59, 1791-1794


S. Auer, G. Lawrence, E. Grün, H. Henkel, S. Kempf, R. Srama, Z. Sternovsky, (2010), A self-triggered dust trajectory sensor, Nucl. Instr. Meth. A, 622, 74-82.

M. J. Cintala, and Hörz, F. (2010). Experimental Impacts into Chondritic targets, part I: disruption of an L6 chondrite by multiple impacts. Meteoritics Planet. Sci., 43, 4.

M. Horányi, Morfill, G.E. and T.E. Cravens, (2010), Spokes in Saturn's B Ring: Could Lightning be the Cause?, IEEE Trans. Plas. Sci., 38

M. Horányi, and A. Juhász (2010), Plasma conditions and the structure of the jovian ring, J. Geophys. Res., 115

D. James, M. Horányi and V. Hoxie, (2010), Polyvinylidene Fluoride Dust Detector Reponse to Particle Impacts, Rev. Sci. Instr., 81

K. Nogami, M. Fujii, H. Ohashi, T. Miyachi, S. Sasaki, S. Hasegawa, H. Yano, H. Shibata, T. Iwai, S. Minami, S. Takechi, E. Grün, R. Srama, (2010), Development of the Mercury dust Monitor (MDM) onboard the BepiColombo mission, Planetary and Space Science, 58, 108-115.

A. R. Poppe and M. Horányi, (2010), Simulations of the Photoelectron Sheath and Dust Levitation on the Lunar Surface, J. Geophys. Res., 115, A08106

A. R. Poppe, B. Jacobsmeyer, D. James, M. Horányi, (2010), Simulation of Polyvinylidene Fluoride Detector Response to Hypervelocity Particle Impact, Nucl. Instr. Meth. A, 622, 583-587.

S. Auer, G. Lawrence, E. Grün, H. Henkel, S. Kempf, R. Srama, Z. Sternovsky, (2010), A self-triggered dust trajectory sensor, Nucl. Instr. Meth. A, 622, 74-82.

X. Wang, M. Horányi, S. Robertson, (2010), Investigation of dust transport on the lunar surface in a laboratory plasma with an electron beam, J. Geophys. Res., 115, A11102


J. E. Colwell, S. R. Robertson, M. Horányi, A. Poppe and P. Wheeler (2009), Lunar Dust Levitation, J. Aero. Eng., 2-9.

E. Grün, R. Srama, N. Altobelli, K. Altwegg, J. Carpenter, L. Colangeli, K.-H. Glassmeier, S. Helfert, H. Henkel, M. Horányi, A. Jäckel, S. Kempf, M. Landgraf, N. McBride, G. Moragas-Klostermeyer, P. Palumbo, H. Scholten, A. Srowig, Z. Sternovsky, X. Vo, (2009), DuneXpress, Exp. Astron., 23, 981-999

M. Horányi, O. Havnes and G. E. Morfill, (2009), Complex Plasmas in the Solar System, in: Complex (Dusty) Plasmas, eds: V. Fortov and G. E. Morfill, CRC Press: Series in Plasma Physics

S. Robertson, M. Horányi, S. Knappmiller, Z. Sternovsky, R. Holzworth, M. Shimogawa, M. Friedrich, K. Torkar, J. Gumbel, L. Megner, G. Baumgartner, R. Latteck, M. Rapp, U.-P. Hoppe and M. E. Hervig, (2009), Mass analysis of charged aerosol particles in NLC and PMSE during the ECOMA/MASS campaign, Ann. Geophys., 27, 1213-1232

R. Srama, W. Woiwode, F. Postberg, S. P. Armes, S. Fuji, D. Dupin, J. Ormond-Prout, Z. Sternovsky, S. Kempf, G. Moragas-Klostermeyer, A. Mocker and E. Grün, (2009), Mass spectrometry of hyper-velocity impacts of organic micrograins, Rapid Comm. in Mass. Spec., 23,

R. Srama, T. Stephan, E. Grün, N. Pailer, A. Keasley, A. Graps, R. Laufer, P. Ehrenfreund, N. Altobelli, K. Altwegg, S. Auer, J. Baggaley, M. J. Burchell, J. Carpenter, L. Colangeli, F. Esposito, S. F. Green, H. Henkel, M. Horányi, A. Jäckel, S. Kempf, N. McBride, G. Moragas-Klostermeyer, H. Krüger, P. Palumbo, A. Srowig, M. Trieloff, P. Tsou, Z. Sternovsky, O. Zeile and H.-P. Röser, (2009), Sample return of interstellar matter (SARIM), Exp. Astron., 23, 303-328

X. Wang, M. Horányi and S. R. Robertson, (2009), Experiments on dust transport in plasma to investigate the origin of the lunar horizon glow, J. Geophys. Res., A5


Amyx, K., Sternovsky, Z., Knappmiller, S., Robertson, S., Horányi, M., and Gumbel, J. (2008). In-situ measurement of smoke particles in the in the wintertime polar mesosphere between 80 and 85 km altitude. J. Atmos. Solar-Terr. Phys., 70, 61.

Cintala, M.J., and Hörz, F. (2008). Experimental Impacts into Chondritic targets, part I: disruption of an L6 chondrite by multiple impacts. Meteoritics Planet. Sci., in press.

Ergun, R.E., et al. (2008). Eigenmode structure in solar wind langmuir waves. Phys. Rev. Lett., 101, 051101.

Main, D.S., Newman, D. L., and Ergun, R. E. (2008). Double layers and ion phase-space holes in the auroral upward-current region. Phys. Rev. Lett., 97, 18.

Munsat, T., Ellison, C.L., Light, A., Nuger, J., Willcockson, W., and Wurzel, S. (2008). The Colorado FRC experiment. ,J. Fusion Energ., 27.

Peterson, W.K., et al. (2008). Temporal and spectral variations of the photoelectron flux and solar irradiance during an X-class solar flare. Geophys. Res. Lett., 35, L12102, doi:10.1029/2008GL033746.

Robertson, S. and Sternovsky, Z. (2008). Effect of the induced-dipole force on charging rates of aerosol particles. Phys. Plasmas., 15, 040702.

Sternovsky, Z., Chamberlin, P., and Horányi, M. (2008). Variability of the lunar photoelectron sheath and dust mobility due to solar activity. J. Geophys. Res., in press.

Wang, X., Horányi, M., and Robertson, S. (2008). Plasma probes for the lunar surface. J. Geophys. Res., 113, A08108, doi:10.1029/2008JA013187.


Colwell, J. E., Batiste, S., Horányi, M., Robertson, S. and Sture, S. (2007). The lunar surface: Dust dynamics and regolith mechanics. Reviews of Geophysics, 45, No. 2, RG2006 10.1029/2005RG000184.

Colwell, J.E., Horányi, M., Robertson, S., Wang, X., Hagsjaa, A., and Wheeler P. (2007). Behavior of charge dust in plasma and photoelectric sheaths. In H. Kruger and A. Graps (Eds.), Dust in Planetary Systems, ESA-SP-643, pp.171-175.

Colwell, J.E., Robertson, S., Horányi, M., Wang, X., Poppe, A., and Wheeler, P. (2007). Lunar dust levitation. Journal of Aerospace Engineering, in press.

Colwell, J.E., Sture, S., Contala, M., Durda, D., Hendrix, A., Goudie, T., Curtis, D., Ashcom, D.J., Kanter, M., Keohane, T., Lemos, A., Lupton, M., and Route, M. (2007). Ejecta from impacts at 0.2 ñ 2.3 m/s in low gravity. J. Icarus.

Grün E. (2007). Solar system dust. In L.A McFadden, P.R. Weissman, and T.V. Johnson, (Eds.), Encyclopedia of the Solar System, second edition, Academic Press, pp. 621.

Messmer, P., Horányi, M., Sternovsky, Z., Colwell, J., and Robertson, S. (2007). Numerical simulations of the lunar plasma environment with the VORPAL framework, Lunar Exploration Architecture Workshop; Tempe, Ariz.

Sternovsky, Z., Amyx, K., Bano, G., Landgraf, M., Horányi, M., Knappmiller, S., Robertson, S., Grun, E., Srama, R., and S. Auer. (2007). Large area mass analyzer (LAMA) instrument for the chemical analysis of interstellar dust particles. Rev. Sci. Instrum., 78, 014501.

Wang, X., Colwell, J., Horányi, M. and Robertson, S. (2007). Charge of dust on surfaces in plasma. IEEE Transactions on Plasma Science, 35, 271- 279.

Wang, X., Horányi, M., Sternovsky, Z., Robertson, S., and Morfill, G. E. (2007). A laboratory model of the lunar surface potential near lit-dark boundaries. Geophys. Res. Lett., 34, L16104, doi:10.1029/2007GL030766.

Wang, X., Knappmiller, S., Robertson, S., and Sternovsky, Z. (2007). Analysis of the particle flux to the wall of a hot-filament discharge device. Phys. Plasmas, 14, 043503.


Chaston, C. C., Salem, C., Bonnell, J. W., Carlson, C. W., Ergun, R. E., Strangeway, R. J. and McFadden, J. P. (2006). The turbulent alfvénic aurora, Phys. Rev. Lett. 100, 175003.

Colwell, J.E., Robertson, S., Horányi, M., Wang, X., and Wheeler, P. (2006). Charged dust dynamics near the lunar surface. Earth and Space, 188, 24.

Krauss, C.E., Horányi, M., and Robertson, S. (2006). Modeling the formation of electrostatic discharges on Mars. J. Geophys. Res., 111, E02001, doi:10.1029/ 2004JE002313

Munsat, T., and Zweben, S.J. (2006). Derivation of time-dependent, two-dimensional velocity field maps for plasma turbulence studies. Rev. Sci. Instrum. 77(10) 103501:1.

Srama, R., Altobelli, N., Kempf, S., Lera, S., Linnemann, H., Moragas-Klostermeyer, G., Rachev, M., Srowig, A., Krüger, H., de Kam, J., Vo, Q., Landgraf, M., and Grün, E. (2006). DUNE Express ñ dust astronomy with ConeXpress, Adv. Space Res., Vol. 38(9), 2093.


Grün, E., Srama, R., Krüger, H., Kempf, S., Dikarev, V., Helfert, S., and Moragas-Klostermeyer, G. (2005). 2002 Kuiper prize lecture: Dust astronomy, Icarus, 174, 1.

Hörz, F., Cintala, M.J., See, T.H., and Le, L. (2005). Shock melting of ordinary chondrite powders and implications for asteroidal regoliths. Meteoritics Planet. Sci., 40, 1329-1346.

Srama, R., Srowig, A., Rachev, M., Grün, E., Auer, S., Conlon, T., Glasmachers, A., Harris, D., Helfert, S., Kempf, S., Linnemann, H., Moragas-Klostermeyer, G., and Tschernjawski, G. and V. (2005). Development of an advanced dust telescope. Earth, Moon and Planets, 95(1-4):211, DOI: 10.1007/s11038-005-9040-z.


Horányi, M., Hartquist, T. W., Havnes, O., Mendis, D. A., and Morfill, G. E. (2004). Dusty plasma effects in Saturn's magnetosphere. Reviews of Geophysics, 42, RG4002, doi:10.1029/2004RG000151.

Messmer, P. and Bruhwiler, D.L. (2004). Parallel electrostatic solver for the VORPAL code. Comp. Phys. Comm., 164, 118.

Messmer, P. and Horányi, M., (2004). Electromagnetic modeling of extended dust grains in astrophysical plasmas. APS Spring meeting, R14.004.


Krauss, C. E., Horányi, M., and Robertson, S. (2003). Experimental evidence for electrostatic discharging of dust near the surface of Mars. New Journal of Physics, 5, 70.1-70.9.

Munsat, T., Mazzucato, E., Park, H., Deng, B.H., Domier, C.W., Luhmann, Jr., N.C., Wang, J., Xia, Z.G., Donné, A.J.H., and van de Pol, M. (2003). Microwave imaging reflectometer for TEXTOR. Rev. Sci. Instr., 74(3) 1426.

Robertson, S., Sickafoose, A. A., Colwell, J., and Horányi, M. (2003). Dust grain charging and levitation in a weakly collisional DC sheath. Phys. Plasmas 10, 3874-3880.


Hodges, R.R. (2002). Ice in lunar polar regions revisited. J. Geophys. Res., 107, NO E2, 10.1029/2000JE001, 491.

Sickafoose, A.A., Colwell, J.E., Horányi, M., and Robertson, S. (2002). Experimental levitation of dust grains in a plasma sheath. J. Geophys. Res., 107 (A11), 1408.

Sternovsky, Z., Robertson, S., Colwell, J.E., Sickafoose, A.A., and Horányi, M. (2002). Contact charging of lunar and Martian dust simulants. J. Geophys. Res., 107 (E11), 5105.


Ergun, R.E., et al., (2001). Direct observation of localized parallel electric fields in a space plasma. Phys.Rev. Lett., 87, 4.

Grün, E., Gustafson, B.A.S., Dermott, S. and Fechtig, H. (Eds.). (2001). Interplanetary Dust, Springer, Berlin, Heidelberg, New York, pp. 295.

Grün, E. (2001). The dusty heliosphere. The Century of Space Science, Kluwer Academic Publishers, pp. 1163.

Sickafoose, A.A., Colwell, J.E., Horányi, M., and Robertson, S. (2001). Experimental investigations on photoelectric and triboelectric charging of dust. J. Geophys. Res., 106, 8343.

Soukhanovskii, V.A., Stutman, D., Iovea, M., Finkenthal, M., Moos, H. W., Munsat, T., Jones, B., Hoffman, D., Kaita, R., and Majeski, R. (2001). Multilayer mirror and foil filter AXUV diode arrays on CDX-U spherical torus. Rev. Sci. Instr., 72(1) 737.

Sternovsky, Z., Horányi, M., and Robertson, S. (2001). Charging of dust particles on surfaces. Journal of Vac. Sci. Technol., A19(5), 2533.


Grün, E., et al. (2000). Techniques for galactic dust measurements in the heliosphere. Journal of Geophysical Research, 105, 10,403.

Sickafoose, A. A., Colwell, J. E., Horányi, M., and Robertson, S. (2000). Photo-electric charging of dust particles in vacuum. Physics Review Lett., 84, 6034.

Pre 2000

Cintala, M.J., Berthoud, L. and Hörz, F. (1999). Ejection-velocity distributions from impacts into coarse-grained sand. Meteoritics Planet. Sci., 34, 605.

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Stern, S.A. (1999). The lunar atmosphere: History, status and current problems. Rev. Geophysics, 37.

Ergun, R.E., et al. (1998). Debye-scale plasma structures associated with magnetic-field-aligned electric fields. Phys. Rev. Lett., 81, 826.

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Horányi, M., Walch, B., Robertson, S. and Alexander, D. (1998). Electrostatic charging properties of Apollo-17 lunar dust. J. Geophys. Res. 103, 8575.

Parker, J.W., Stern, S.A., Gladstone, G.R. and Shull, J.M. (1998). Re-Analysis of the spectroscopic detection of Argon in the lunar atmosphere. Astrophysical Journal, 509.

Stern, S.A., Parker, J.W., Morgan, T.H., Flynn, B.C., Hunten, D., Sprague, A., Mendillo, M. and Festou, M.C. (1997). HST's search for Magnesium in the lunar atmosphere. Icarus, 127.

Flynn, B.C. and Stern, S.A. (1996). Spectroscopic survey of metallic abundances in the lunar atmosphere. Icarus

Horányi, M. (1996). Charged dust dynamics in the Solar System. Ann. Rev. Astron. Astrophys. 34, 383.

Stern, S.A. and Flynn, B.C. (1995). Narrow-field imaging of the lunar sodium exosphere. Astrophysics Journal, 109.

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