Implications for the Formation of 2005 UD from a New Convex Shape Model
(155140) 2005 UD has a similar orbit to (3200) Phaethon, an active asteroid in a highly eccentric orbit thought to be the source of the Geminid meteor shower. Evidence points to a genetic relationship between these two objects, but we have yet to fully understand how 2005 UD and Phaethon could have...
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Zusammenfassung: | (155140) 2005 UD has a similar orbit to (3200) Phaethon, an active asteroid
in a highly eccentric orbit thought to be the source of the Geminid meteor
shower. Evidence points to a genetic relationship between these two objects,
but we have yet to fully understand how 2005 UD and Phaethon could have
separated into this associated pair. Presented herein are new observations of
2005 UD from five observatories that were carried out during the 2018, 2019,
and 2021 apparitions. We implemented light curve inversion using our new data,
as well as dense and sparse archival data from epochs in 2005--2021 to better
constrain the rotational period and derive a convex shape model of 2005 UD. We
discuss two equally well-fitting pole solutions ($\lambda = 116.6^{\circ}$,
$\beta = -53.6^{\circ}$) and ($\lambda = 300.3^{\circ}$, $\beta =
-55.4^{\circ}$), the former largely in agreement with previous thermophysical
analyses and the latter interesting due to its proximity to Phaethon's pole
orientation. We also present a refined sidereal period of $P_{\text{sid}} =
5.234246 \pm 0.000097$ hr. A search for surface color heterogeneity showed no
significant rotational variation. An activity search using the deepest stacked
image available of 2005 UD near aphelion did not reveal a coma or tail but
allowed modeling of an upper limit of 0.04 to 0.37~kg s$^{-1}$ for dust
production. We then leveraged our spin solutions to help limit the range of
formation scenarios and the link to Phaethon in the context of nongravitational
forces and timescales associated with the physical evolution of the system. |
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DOI: | 10.48550/arxiv.2303.12991 |