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FOSSIL: I. The Spin Rate Limit of Jupiter Trojans

Authors :
Chang, Chan-Kao
Chen, Ying-Tung
Fraser, Wesley C.
Yoshida, Fumi
Lehner, Matthew J.
Wang, Shiang-Yu
Kavelaars, JJ
Pike, Rosemary E.
Alexandersen, Mike
Ito, Takashi
Choi, Young-Jun
Contreras, A. Paula Granados
JeongAhn, Youngmin
Ji, Jianghui
Kim, Myung-Jin
Lawler, Samantha M.
Li, Jian
Lin, Zhong-Yi
Lykawka, Patryk Sofia
Moon, Hong-Kyu
More, Surhud
Munoz-Gutierrez, Marco
Ohtsuki, Keiji
Terai, Tsuyoshi
Urakawa, Seitaro
Zhang, Hui
Zhao, Hai-Bin
Collaboration, Ji-Lin Zhou. The FOSSIL
Chang, Chan-Kao
Chen, Ying-Tung
Fraser, Wesley C.
Yoshida, Fumi
Lehner, Matthew J.
Wang, Shiang-Yu
Kavelaars, JJ
Pike, Rosemary E.
Alexandersen, Mike
Ito, Takashi
Choi, Young-Jun
Contreras, A. Paula Granados
JeongAhn, Youngmin
Ji, Jianghui
Kim, Myung-Jin
Lawler, Samantha M.
Li, Jian
Lin, Zhong-Yi
Lykawka, Patryk Sofia
Moon, Hong-Kyu
More, Surhud
Munoz-Gutierrez, Marco
Ohtsuki, Keiji
Terai, Tsuyoshi
Urakawa, Seitaro
Zhang, Hui
Zhao, Hai-Bin
Collaboration, Ji-Lin Zhou. The FOSSIL
Publication Year :
2021

Abstract

Rotation periods of 53 small (diameters $2 < D < 40$ km) Jupiter Trojans (JTs) were derived using the high-cadence light curves obtained by the FOSSIL phase I survey, a Subaru/Hyper Suprime-Cam intensive program. These are the first reported periods measured for JTs with $D < 10$ km. We found a lower limit of the rotation period near 4 hr, instead of the previously published result of 5 hr (Ryan et al. 2017; Szabo et al. 2017, 2020) found for larger JTs. Assuming a rubble-pile structure for JTs, a bulk density of 0.9 gcm$^{-3}$ is required to withstand this spin rate limit, consistent with the value $0.8-1.0$ gcm$^{-3}$ (Marchis et al. 2006; Mueller et al. 2010; Buie et al. 2015; Berthier et al. 2020) derived from the binary JT system, (617) Patroclus-Menoetius system.<br />Comment: Accepted by PSJ on July 9th, 2021. 15 pages, 7 figures, and 3 tables

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1363548997
Document Type :
Electronic Resource