Free Access
Issue |
A&A
Volume 647, March 2021
|
|
---|---|---|
Article Number | A61 | |
Number of page(s) | 12 | |
Section | Planets and planetary systems | |
DOI | https://doi.org/10.1051/0004-6361/202039628 | |
Published online | 09 March 2021 |
- Alí-Lagoa, V., Müller, T. G., Kiss, C., et al. 2020, A&A, 638, A84 [EDP Sciences] [Google Scholar]
- Binzel, R., DeMeo, F., Turtelboom, E., et al. 2019, Icarus, 324, 41 [Google Scholar]
- Bottke, W. F., Morbidelli, A., Jedicke, R., et al. 2002, Icarus, 156, 399 [Google Scholar]
- Bottke, W. F., Vokrouhlický, D., Rubincam, D. P., & Nesvorný, D. 2006, Ann. Rev. Earth Planet. Sci., 34, 157 [Google Scholar]
- Bowell, E., Hapke, B., Domingue, D., et al. 1989, Asteroids II, eds. R. P. Binzel, T. Gehrels, & M. S. Matthews (Tucson, AZ: University of Arizona Press), 524 [Google Scholar]
- Bruck Syal, M., Michael Owen, J., & Miller, P. L. 2016, Icarus, 269, 50 [Google Scholar]
- Brunetto, R., Loeffler, M. J., Nesvorný, D., Sasaki, S., & Strazzulla, G. 2015, Asteroid Surface Alteration by Space Weathering Processes (Tucson, AZ: University of Arizona Press), 597 [Google Scholar]
- Čapek, D. 2007, PhD thesis, Charles University, Prague, Czech Republic [Google Scholar]
- Carry, B. 2012, Planet. Space Sci., 73, 98 [Google Scholar]
- Chesley, S. R., Ostro, S. J., Vokrouhlický, D., et al. 2003, Science, 302, 1739 [Google Scholar]
- Chesley, S. R., Farnocchia, D., Nolan, M. C., et al. 2014, Icarus, 235, 5 [Google Scholar]
- Cremers, C. J., & Birkebak, R. C. 1971, Lunar Planet. Sci. Conf. Proc., 2, 2311 [NASA ADS] [Google Scholar]
- Cremers, C. J., & Hsia, H. S. 1974, Lunar Planet. Sci. Conf. Proc., 3, 2703 [Google Scholar]
- Ćuk, M., Gladman, B. J., & Nesvorný, D. 2014, Icarus, 239, 154 [NASA ADS] [CrossRef] [Google Scholar]
- Delbó, M., Libourel, G., Wilkerson, J., et al. 2014, Nature, 508, 233 [NASA ADS] [CrossRef] [Google Scholar]
- Delbó, M., Mueller, M., Emery, J. P., Rozitis, B., & Capria, M. T. 2015, Asteroid Thermophysical Modeling (Tucson, AZ: University of Arizona Press), 107 [Google Scholar]
- Del Vigna, A., Faggioli, L., Milani, A., et al. 2018, A&A, 617, A61 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- DeMeo, F. E., & Carry, B. 2013, Icarus, 226, 723 [Google Scholar]
- DeMeo, F. E., & Carry, B. 2014, Nature, 505, 629 [Google Scholar]
- DeMeo, F. E., Alexander, C. M. O., Walsh, K. J., Chapman, C. R., & Binzel, R. P. 2015, The Compositional Structure of the Asteroid Belt (Tucson, AZ: University of Arizona Press), 13 [Google Scholar]
- Denneau, L., Jedicke, R., Grav, T., et al. 2013, PASP, 125, 357 [Google Scholar]
- Ďurech, J., Carry, B., Delbó, M., Kaasalainen, M., & Viikinkoski, M. 2015, Asteroid Models from Multiple Data Sources (Tucson, AZ: University of Arizona Press), 183 [Google Scholar]
- Farinella, P., Vokrouhlický, D., & Hartmann, W. K. 1998, Icarus, 132, 378 [Google Scholar]
- Farnocchia, D., Chesley, S. R., Vokrouhlický, D., et al. 2013, Icarus, 224, 1 [Google Scholar]
- Farnocchia, D., Mommert, M., Hora, J. L., et al. 2014, IAU Symp., 310, 142 [Google Scholar]
- Granvik, M., Morbidelli, A., Jedicke, R., et al. 2018, Icarus, 312, 181 [Google Scholar]
- Greenberg, A. H., Margot, J.-L., Verma, A. K., Taylor, P. A., & Hodge, S. E. 2020, AJ, 159, 92 [Google Scholar]
- Gundlach, B., & Blum, J. 2013, Icarus, 223, 479 [NASA ADS] [CrossRef] [Google Scholar]
- Harris, A. W., & Drube, L. 2016, ApJ, 832, 127 [Google Scholar]
- Heiken, G. H. Vaniman, D. T., & French, B. M., et al. 1991, Lunar Sourcebook: A User’s Guide to the Moon (Cambridge: Cambridge University Press) [Google Scholar]
- Hoerz, F., Schneider, E., Gault, D. E., Hartung, J. B., & Brownlee, D. E. 1975, Moon, 13, 235 [Google Scholar]
- Horz, F., & Cintala, M. J. 1996, Meteorit. Planet. Sci. Suppl., 31, A65 [Google Scholar]
- Housen, K. R., & Holsapple, K. A. 2011, Icarus, 211, 856 [Google Scholar]
- Hudson, S. 1994, Remote Sens. Rev., 8, 195 [CrossRef] [Google Scholar]
- Hudson, R. S., Ostro, S. J., Jurgens, R. F., et al. 2000, Icarus, 148, 37 [Google Scholar]
- Jewitt, D., Hsieh, H., & Agarwal, J. 2015, The Active Asteroids (Tucson, AZ: University of Arizona Press), 221 [Google Scholar]
- Kaasalainen, M., & Torppa, J. 2001, Icarus, 153, 24 [Google Scholar]
- Kaasalainen, M., Torppa, J., & Muinonen, K. 2001, Icarus, 153, 37 [Google Scholar]
- Kaasalainen, M., Mottola, S., & Fulchignoni, M. 2002, Asteroid Models from Disk-integrated Data (Tucson, AZ: University of Arizona Press), 139 [Google Scholar]
- Kikwaya Eluo, J.-B., & Hergenrother, C. W. 2015, IAU General Assembly, 29, 2255911 [Google Scholar]
- La Spina, A., Paolicchi, P., Kryszczyńska, A., & Pravec, P. 2004, Nature, 428, 400 [Google Scholar]
- Lauretta, D. S., Dellagiustina, D. N., Bennett, C. A., et al. 2019a, Nature, 568, 55 [Google Scholar]
- Lauretta, D. S., Hergenrother, C. W., Chesley, S. R., et al. 2019b, Science, 366, 3544 [Google Scholar]
- Magri, C., Ostro, S. J., Scheeres, D. J., et al. 2007, Icarus, 186, 152 [Google Scholar]
- Marciniak, A., Alí-Lagoa, V., Müller, T. G., et al. 2019, A&A, 625, A139 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- McMahon, J. W., Scheeres, D. J., Chesley, S. R., et al. 2020, J. Geophys. Res. Planets, 125, e06229 [Google Scholar]
- Michikami, T., Honda, C., Miyamoto, H., et al. 2019, Icarus, 331, 179 [Google Scholar]
- Milani, A., Cellino, A., Knežević, Z., et al. 2014, Icarus, 239, 46 [Google Scholar]
- Mitchell, J., Bromwell, L., Carrier, W. I., Costes, N., & Scott, R. 1974, Space Sci. Lab. Ser., 15, 72 [Google Scholar]
- Miyamoto, H., Yano, H., Scheeres, D. J., et al. 2007, Science, 316, 1011 [Google Scholar]
- Molaro, J. L., Byrne, S., & Le, J. L. 2017, Icarus, 294, 247 [Google Scholar]
- Molaro, J. L., Walsh, K. J., Jawin, E. R., et al. 2020, Nat. Commun., 11, 2913 [Google Scholar]
- Mommert, M., Farnocchia, D., Hora, J. L., et al. 2014a, ApJ, 789, L22 [Google Scholar]
- Mommert, M., Hora, J. L., Farnocchia, D., et al. 2014b, ApJ, 786, 148 [Google Scholar]
- Morbidelli, A., Delbó, M., Granvik, M., et al. 2020, Icarus, 340, 113631 [Google Scholar]
- Morota, T., Sugita, S., Cho, Y., et al. 2020, Science, 368, 654 [Google Scholar]
- Murdoch, N., Sánchez, P., Schwartz, S. R., & Miyamoto, H. 2015, Asteroid Surface Geophysics (Tucson, AZ: University of Arizona Press), 767 [Google Scholar]
- Nesvorný, D., & Bottke, W. F. 2004, Icarus, 170, 324 [NASA ADS] [CrossRef] [Google Scholar]
- Novaković, B., Tsirvoulis, G., Granvik, M., & Todović, A. 2017, AJ, 153, 266 [NASA ADS] [CrossRef] [Google Scholar]
- Opeil, C. P., Consolmagno, G. J., & Britt, D. T. 2010, Icarus, 208, 449 [Google Scholar]
- Opeil, C. P., Consolmagno, G. J., Safarik, D. J., & Britt, D. T. 2012, Meteorit. Planet. Sci., 47, 319 [Google Scholar]
- Ostrowski, D., & Bryson, K. 2019, Planet. Space Sci., 165, 148 [Google Scholar]
- Polishook, D. 2013, Minor Planet Bulletin, 40, 42 [Google Scholar]
- Pravec, P., & Harris, A. W. 2000, Icarus, 148, 12 [Google Scholar]
- Pravec, P., & Harris, A. W. 2007, Icarus, 190, 250 [Google Scholar]
- Pravec, P., Harris, A. W., Kušnirák, P., Galád, A., & Hornoch, K. 2012, Icarus, 221, 365 [Google Scholar]
- Reddy, V., Sanchez, J. A., Bottke, W. F., et al. 2016, AJ, 152, 162 [Google Scholar]
- Rozitis, B., & Green, S. F. 2012, MNRAS, 423, 367 [Google Scholar]
- Rozitis, B., Maclennan, E., & Emery, J. P. 2014, Nature, 512, 174 [Google Scholar]
- Rubincam, D. P. 1995, J. Geophys. Res., 100, 1585 [Google Scholar]
- Rubincam, D. P. 1998, J. Geophys. Res., 103, 1725 [Google Scholar]
- Ryan, A. J., Pino Muñoz, D., Bernacki, M., & Delbo, M. 2020, J. Geophys. Res. Planets, 125, e06100 [Google Scholar]
- Sánchez, P., & Scheeres, D. J. 2020, Icarus, 338, 113443 [Google Scholar]
- Scheeres, D. J., Hartzell, C. M., Sánchez, P., & Swift, M. 2010, Icarus, 210, 968 [Google Scholar]
- Scheeres, D. J., McMahon, J. W., French, A. S., et al. 2019, Nat. Astron., 3, 352 [Google Scholar]
- Spitale, J., & Greenberg, R. 2001, Icarus, 149, 222 [Google Scholar]
- Spoto, F., Milani, A., Farnocchia, D., et al. 2014, A&A, 572, A100 [Google Scholar]
- Sugita, S., Honda, R., Morota, T., et al. 2020, Lunar Planet. Sci. Conf., 2434 [Google Scholar]
- Susorney, H. C. M., Johnson, C. L., Barnouin, O. S., et al. 2020, Lunar Planet. Sci. Conf., 1372 [Google Scholar]
- Tardioli, C., Farnocchia, D., Rozitis, B., et al. 2017, A&A, 608, A61 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- Vokrouhlický, D. 1998a, A&A, 338, 353 [NASA ADS] [Google Scholar]
- Vokrouhlický, D. 1998b, A&A, 335, 1093 [Google Scholar]
- Vokrouhlický, D. 1999, A&A, 344, 362 [NASA ADS] [Google Scholar]
- Vokrouhlický, D., & Brož, M. 1999, A&A, 350, 1079 [Google Scholar]
- Vokrouhlický, D., Bottke, W. F., Chesley, S. R., Scheeres, D. J., & Statler, T. S. 2015, The Yarkovsky and YORP Effects (Tucson, AZ:University of Arizona Press), 509 [Google Scholar]
- Vokrouhlický, D., Pravec, P., Ďurech, J., et al. 2017, AJ, 153, 270 [NASA ADS] [CrossRef] [Google Scholar]
- Walsh, K. J. 2018, ARA&A, 56, 593 [Google Scholar]
- Warner, B. D., Harris, A. W., & Pravec, P. 2009, Icarus, 202, 134 [Google Scholar]
- Watanabe, S., Hirabayashi, M., Hirata, N., et al. 2019, Science, 364, 268 [NASA ADS] [Google Scholar]
- Whiteley, R. J., Tholen, D. J., & Hergenrother, C. W. 2002, Icarus, 157, 139 [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.