Chladni, E. F. F. Ãber den Ursprung der von Pallas Gefundenen und anderer ihr ähnlicher Eisenmassen, und Ãber Einige Damit in Verbindung stehende Naturerscheinungen (Johan Friedrich Hartknoch, 1794).
Biot, J.-B. Vorläufige Nachricht von dem Steinregen zu lâAigle, am 26sten April 1803. Ann. Phys. 15, 74â76 (1803).
Kulik, L. A. OtÄet meteoritiÄeskoj ekspedicii o rabotach proizvedennych s 19 Maja 1921 g. po 29 Nojabrja 1922 g. Izv. Ross. Akad. Nauk 16, 391â410 (1922).
Marvin, U. B. The discovery and initial characterization of Allan Hills 81005: the first lunar meteorite. Geophys. Res. Lett. 10, 775â778 (1983).
Treiman, A. H., Gleason, J. D. & Bogard, D. D. The SNC meteorites are from Mars. Planet. Space Sci. 48, 1213â1230 (2000).
Thomas, P. C. et al. Impact excavation on asteroid 4 Vesta: Hubble Space Telescope results. Science 277, 1492â1495 (1997).
Nesvorný, D., Bottke, J., William, F., Dones, L. & Levison, H. F. The recent breakup of an asteroid in the main-belt region. Nature 417, 720â771 (2002).
Sykes, M. V. Zodiacal dust bands: their relation to asteroid families. Icarus 85, 267â289 (1990).
Reach, W. T., Franz, B. A. & Weiland, J. L. The three-dimensional structure of the zodiacal dust bands. Icarus 127, 461â484 (1997).
Nesvorný, D., Bottke, W. F., Levison, H. F. & Dones, L. Recent origin of the Solar System dust bands. Astrophys. J. 591, 486â497 (2003).
Graf, T. & Marti, K. Collisional history of H chondrites. J. Geophys. Res. 100, 21247â21264 (1995).
Eugster, O., Herzog, G. F., Marti, K. & Caffee, M. W. in Meteorites and the Early Solar System II (eds Lauretta, D. S. & McSween, H. Y.) 829 (Univ. Arizona Press, 2006).
Spurný, P., BoroviÄka, J. & Shrbený, L. The ŽÄár nad Sázavou meteorite fall: fireball trajectory, photometry, dynamics, fragmentation, orbit, and meteorite recovery. Meteorit. Planet. Sci. 55, 376â401 (2020).
Brown, P., Wiegert, P., Clark, D. & Tagliaferri, E. Orbital and physical characteristics of meter-scale impactors from airburst observations. Icarus 266, 96â111 (2016).
Jenniskens, P. et al. CAMS newly detected meteor showers and the sporadic background. Icarus 266, 384â409 (2016).
Bottke, W. F. et al. Debiased orbital and absolute magnitude distribution of the near-Earth objects. Icarus 156, 399â433 (2002).
Granvik, M. et al. Debiased orbit and absolute-magnitude distributions for near-Earth objects. Icarus 312, 181â207 (2018).
Nesvorný, D. et al. NEOMOD: a new orbital distribution model for near-Earth objects. Astron. J. 166, 55 (2023).
Binzel, R. P., Bus, S. J., Burbine, T. H. & Sunshine, J. M. Spectral properties of near-Earth asteroids: evidence for sources of ordinary chondrite meteorites. Science 273, 946â948 (1996).
Vernazza, P. et al. Compositional differences between meteorites and near-Earth asteroids. Nature 454, 858â860 (2008).
Marsset, M. et al. The debiased compositional distribution of MITHNEOS: global match between the near-Earth and main-belt asteroid populations, and excess of D-type near-Earth objects. Astron. J. 163, 165 (2022).
Farinella, P., Vokrouhlický, D. & Hartmann, W. K. Meteorite delivery via Yarkovsky orbital drift. Icarus 132, 378â387 (1998).
Bus, S. J. & Binzel, R. P. Phase II of the small main-belt asteroid spectroscopic survey. A feature-based taxonomy. Icarus 158, 146â177 (2002).
DeMeo, F. E., Binzel, R. P., Slivan, S. M. & Bus, S. J. An extension of the Bus asteroid taxonomy into the near-infrared. Icarus 202, 160â180 (2009).
Vernazza, P. et al. Multiple and fast: the accretion of ordinary chondrite parent bodies. Astrophys. J. 791, 120 (2014).
Vernazza, P. et al. Compositional homogeneity of CM parent bodies. Astron. J. 152, 54 (2016).
de León, J., Licandro, J., Serra-Ricart, M., Pinilla-Alonso, N. & Campins, H. Observations, compositional, and physical characterization of near-Earth and Mars-crosser asteroids from a spectroscopic survey. Astron. Astrophys. 517, A23 (2010).
Molnar, L. A. & Haegert, M. J. Details of Recent Collisions of Asteroids 832 Karin and 158 Koronis. In Proc. AAS/Division for Planetary Sciences Meeting, 41, 27.05 (2009).
Nesvorný, D., Vokrouhlický, D., Bottke, W. F. & Sykes, M. Physical properties of asteroid dust bands and their sources. Icarus 181, 107â144 (2006).
Flynn, G. J., Durda, D. D., Sandel, L. E., Kreft, J. W. & Strait, M. M. Dust production from the hypervelocity impact disruption of the Murchison hydrous CM2 meteorite: implications for the disruption of hydrous asteroids and the production of interplanetary dust. Planet. Space Sci. 57, 119â126 (2009).
Morbidelli, A., Bottke, W. F., Nesvorný, D. & Levison, H. F. Asteroids were born big. Icarus 204, 558â573 (2009).
Campo Bagatin, A., Cellino, A., Davis, D. R., Farinella, P. & Paolicchi, P. Wavy size distributions for collisional systems with a small-size cutoff. Planet. Space Sci. 42, 1079â1092 (1994).
OâBrien, D. P. & Greenberg, R. The collisional and dynamical evolution of the main-belt and NEA size distributions. Icarus 178, 179â212 (2005).
Brož, M., Vokrouhlický, D., Morbidelli, A., Nesvorný, D. & Bottke, W. F. Did the Hilda collisional family form during the late heavy bombardment? Mon. Not. R. Astron. Soc. 414, 2716â2727 (2011).
Levison, H. F. & Duncan, M. J. The long-term dynamical behavior of short-period comets. Icarus 108, 18â36 (1994).
Yarkovsky, I. O. Plotnosť svetovogo efira i okazyvaemoe im soprotivlenie dviženiu (Typografia Judina, 1901).
Vokrouhlický, D. Diurnal Yarkovsky effect as a source of mobility of meter-sized asteroidal fragments. I. Linear theory. Astron. Astrophys. 335, 1093â1100 (1998).
Vokrouhlický, D. & Farinella, P. The Yarkovsky seasonal effect on asteroidal fragments: a nonlinearized theory for spherical bodies. Astron. J. 118, 3049â3060 (1999).
Rubincam, D. P. Radiative spin-up and spin-down of small asteroids. Icarus 148, 2â11 (2000).
Äapek, D. & Vokrouhlický, D. The YORP effect with finite thermal conductivity. Icarus 172, 526â536 (2004).
Gattacceca, J. et al. The Meteoritical Bulletin, No. 110. Meteorit. Planet. Sci. 57, 2102â2105 (2022).
Marsset, M. et al. The Massalia asteroid family as the origin of ordinary L chondrites. Nature https://doi.org/10.1038/s41586-024-08007-6 (2024).
Meier, M. Meteorite Orbits www.meteoriteorbits.info/ (2023).
Farley, K. A., Vokrouhlický, D., Bottke, W. F. & Nesvorný, D. A late Miocene dust shower from the break-up of an asteroid in the main belt. Nature 439, 295â297 (2006).
Chesley, S. R., Chodas, P. W., Milani, A., Valsecchi, G. B. & Yeomans, D. K. Quantifying the risk posed by potential Earth impacts. Icarus 159, 423â432 (2002).
Lauretta, D. S. et al. The unexpected surface of asteroid (101955) Bennu. Nature 568, 55â60 (2019).
Watanabe, S. et al. Hayabusa2 arrives at the carbonaceous asteroid 162173 RyuguâA spinning top-shaped rubble pile. Science 364, 268â272 (2019).
NovakoviÄ, B., Tsiganis, K. & KneževiÄ, Z. Chaotic transport and chronology of complex asteroid families. Mon. Not. R. Astron. Soc. 402, 1263â1272 (2010).
Nesvorný, D. et al. Cometary origin of the zodiacal cloud and carbonaceous micrometeorites. Implications for hot debris disks. Astrophys. J. 713, 816â836 (2010).
Bottke, W. F. et al. in Asteroids IV (eds Michel, P. et al.) 701â724 (Univ. Arizona Press, 2015).
Nesvorný, D., Brož, M. & Carruba, V. in Asteroids IV (eds Michel, P. et al.) 297â321 (Univ. Arizona Press, 2015).
Benz, W. & Asphaug, E. Catastrophic disruptions revisited. Icarus 142, 5â20 (1999).
Bottke, W. F. et al. Interpreting the cratering histories of Bennu, Ryugu, and other spacecraft-explored asteroids. Astron. J. 160, 14 (2020).
Vernazza, P. et al. The impact crater at the origin of the Julia family detected with VLT/SPHERE? Astron. Astrophys. 618, A154 (2018).
Å eveÄek, P. et al. SPH/N-Body simulations of small (Dâ=â10âkm) asteroidal breakups and improved parametric relations for Monte-Carlo collisional models. Icarus 296, 239â256 (2017).
Harris, A. W. et al. in Asteroids IV (eds Michel, P. et al.) 835â854 (Univ. Arizona Press, 2015).
OâBrien, D. P. et al. Constraining the cratering chronology of Vesta. Planet. Space Sci. 103, 131â142 (2014).
Marchi, S. et al. The violent collisional history of asteroid 4 Vesta. Science 336, 690 (2012).
Brož, M., Chrenko, O., Nesvorný, D. & Dauphas, N. Early terrestrial planet formation by torque-driven convergent migration of planetary embryos. Nat. Astron. 5, 898â902 (2021).
Love, S. G. & Brownlee, D. E. A direct measurement of the terrestrial mass accretion rate of cosmic dust. Science 262, 550â553 (1993).
Carruba, V., Nesvorný, D. & Vokrouhlický, D. Detection of the YORP effect for small asteroids in the Karin cluster. Astron. J. 151, 164 (2016).
Quinn, T. R., Tremaine, S. & Duncan, M. A three million year integration of the Earthâs orbit. Astron. J. 101, 2287â2305 (1991).
Gradie, J. C., Chapman, C. R. & Tedesco, E. F. in Asteroids II (eds Binzel, R. P. et al.) 316â335 (Univ. Arizona Press, 1989).
Harris, A. W. & Chodas, P. W. The population of near-Earth asteroids revisited and updated. Icarus 365, 114452 (2021).