小行星(457175)2008 GO98/362P活动的原因

IF 1.3 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS Astrophysical Bulletin Pub Date : 2023-05-12 DOI:10.1134/S1990341323010030
Yu. A. Chernetenko
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引用次数: 0

摘要

一颗活跃小行星(457175)2008 GO98/362P的轨道是基于马斯登模型在考虑非重力加速度的情况下得到的。在彗星活动之前的2016年观测中发现了系统偏差的存在。考虑了与小天体碰撞的可能性。为此,发现了小行星(457175)与编号为585 961的小行星和编号为536 561的未编号小行星(根据小行星中心截至2021年10月的观测目录中的状态)之间达到最小距离(MOID,最小轨道相交距离)的动量。在小行星经过升交点附近的时候,轨道上会合的最多次数,这表明有可能发生碰撞,导致主体碎裂。考虑了两种分离情况,并估计了主体和可能碎片的轨道变化。对于形成的碎片,日心速度变化为\(dv=0.148\) m s \({}^{-1}\),非重力加速度为\(A_{3}=-12.5\times 10^{-8}\) AU day \({}^{-2}\)。主体动态变化不明显。
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Causes of Asteroid (457175) 2008 GO98/362P Activity

The orbit of an active asteroid (457175) 2008 GO98/362P was obtained taking into account non-gravitational acceleration based on the Marsden model. The presence of systematic deviations was revealed in the 2016 observations prior to the cometary activity. The possibility of a collision with a minor body was considered. For this, the momenta of reaching the minimum distances (MOID, Minimum Orbit Intersection Distance) between the orbits of the asteroid (457175) and 585 961 numbered, and 536 561 unnumbered asteroids (according to the status in the Minor Planet Center catalogs of observations as of October 2021) were found. The maximum number of orbital rendezvouses falls on the time when the asteroid was passing in the vicinity of the ascending node, which suggests the possibility of a collision leading to the fragmentation of the main body. Two separation scenarios are considered and orbit variation of the main body and possible fragments are estimated. For the formed fragment, the heliocentric velocity variation amounted to \(dv=0.148\) m s\({}^{-1}\) and non-gravitational acceleration was \(A_{3}=-12.5\times 10^{-8}\) AU day\({}^{-2}\). The main body dynamics did not vary significantly.

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来源期刊
Astrophysical Bulletin
Astrophysical Bulletin 地学天文-天文与天体物理
CiteScore
2.00
自引率
33.30%
发文量
31
审稿时长
>12 weeks
期刊介绍: Astrophysical Bulletin is an international peer reviewed journal that publishes the results of original research in various areas of modern astronomy and astrophysics, including observational and theoretical astrophysics, physics of the Sun, radio astronomy, stellar astronomy, extragalactic astronomy, cosmology, and astronomy methods and instrumentation.
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