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FRAGMENTATION KINEMATICS IN COMET 332P/IKEYA-MURAKAMI

机译:COMET 332P / IKEYA-MURAKAMI中的破碎运动学

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We present initial time-resolved observations of the split comet 332P/Ikeya-Murakami taken using the Hubble Space Telescope. Our images reveal a dust-bathed cluster of fragments receding from their parent nucleus at projected speeds in the range 0.06-3.5 m s(-1) from which we estimate ejection times from 2015 October to December. The number of fragments with effective radii greater than or similar to 20 m follows a differential power law with index gamma = -3.6 +/- 0.6, while smaller fragments are less abundant than expected from an extrapolation of this power law. We argue that, in addition to losses due to observational selection, torques from anisotropic outgassing are capable of destroying the small fragments by driving them quickly to rotational instability. Specifically, the spin-up times of fragments. 20 m in radius are shorter than the time elapsed since ejection from the parent nucleus. The effective radius of the parent nucleus is re <= 275 m (geometric albedo 0.04 assumed). This is about seven times smaller than previous estimates and results in a nucleus mass at least 300 times smaller than previously thought. The mass in solid pieces, 2 x 10(9) kg, is about 4% of the mass of the parent nucleus. As a result of its small size, the parent nucleus also has a short spin-up time. Brightness variations in time-resolved nucleus photometry are consistent with rotational instability playing a role in the release of fragments.
机译:我们介绍了使用哈勃太空望远镜拍摄的分裂彗星332P / Ikeya-Murakami的初始时间分辨观测结果。我们的图像显示了一个尘埃簇状的碎片,它们从其母核中退回,其投射速度预计为0.06-3.5 m s(-1),据此我们估计从2015年10月到12月的喷射时间。有效半径大于或等于20 m的碎片数目遵循指数为γ= -3.6 +/- 0.6的微分幂定律,而较小的碎片则比根据该幂定律的外推法期​​望的丰度低。我们认为,除了由于观测选择而造成的损失外,各向异性除气产生的扭矩还能够通过将小碎片快速驱动至旋转不稳定性而破坏小碎片。具体来说,是片段的加速时间。半径20 m短于从母核弹出以来的时间。母核的有效半径为re <= 275 m(假设反照率为0.04)。这比以前的估计小了大约七倍,并且导致原子核质量比以前认为的小至少三百倍。实心块的质量为2 x 10(9)kg,约为母核质量的4%。由于其尺寸小,母核的旋转时间也很短。时间分辨核光度法中的亮度变化与旋转不稳定性在碎片释放中起作用有关。

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