The Dynamical Origins of the Dark Comets and a Proposed Evolutionary Track

Fuente: arXiv
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Hauptverfasser: Taylor, Aster G., Steckloff, Jordan K., Seligman, Darryl Z., Farnocchia, Davide, Dones, Luke, Vokrouhlicky, David, Nesvorny, David, Micheli, Marco
Format: Preprint
Veröffentlicht: 2024
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author Taylor, Aster G.
Steckloff, Jordan K.
Seligman, Darryl Z.
Farnocchia, Davide
Dones, Luke
Vokrouhlicky, David
Nesvorny, David
Micheli, Marco
author_facet Taylor, Aster G.
Steckloff, Jordan K.
Seligman, Darryl Z.
Farnocchia, Davide
Dones, Luke
Vokrouhlicky, David
Nesvorny, David
Micheli, Marco
contents So-called 'dark comets' are small, morphologically inactive near-Earth objects (NEOs) that exhibit nongravitational accelerations inconsistent with radiative effects. These objects exhibit short rotational periods (minutes to hours), where measured. We find that the strengths required to prevent catastrophic disintegration are consistent with those measured in cometary nuclei and expected in rubble pile objects. We hypothesize that these dark comets are the end result of a rotational fragmentation cascade, which is consistent with their measured physical properties. We calculate the predicted size-frequency distribution for objects evolving under this model. Using dynamical simulations, we further demonstrate that the majority of these bodies originated from the $ν_6$ resonance, implying the existence of volatiles in the current inner main belt. Moreover, one of the dark comets, (523599) 2003 RM, likely originated from the outer main belt, although a JFC origin is also plausible. These results provide strong evidence that volatiles from a reservoir in the inner main belt are present in the near-Earth environment.
format Preprint
id arxiv_https___arxiv_org_abs_2407_01839
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Dynamical Origins of the Dark Comets and a Proposed Evolutionary Track
Taylor, Aster G.
Steckloff, Jordan K.
Seligman, Darryl Z.
Farnocchia, Davide
Dones, Luke
Vokrouhlicky, David
Nesvorny, David
Micheli, Marco
Earth and Planetary Astrophysics
So-called 'dark comets' are small, morphologically inactive near-Earth objects (NEOs) that exhibit nongravitational accelerations inconsistent with radiative effects. These objects exhibit short rotational periods (minutes to hours), where measured. We find that the strengths required to prevent catastrophic disintegration are consistent with those measured in cometary nuclei and expected in rubble pile objects. We hypothesize that these dark comets are the end result of a rotational fragmentation cascade, which is consistent with their measured physical properties. We calculate the predicted size-frequency distribution for objects evolving under this model. Using dynamical simulations, we further demonstrate that the majority of these bodies originated from the $ν_6$ resonance, implying the existence of volatiles in the current inner main belt. Moreover, one of the dark comets, (523599) 2003 RM, likely originated from the outer main belt, although a JFC origin is also plausible. These results provide strong evidence that volatiles from a reservoir in the inner main belt are present in the near-Earth environment.
title The Dynamical Origins of the Dark Comets and a Proposed Evolutionary Track
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2407.01839