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Hubble Space Telescope Observations of 3200 Phaethon at Closest Approach

机译:哈勃太空望远镜在近距离观察3200凤凰的观测结果

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We present Hubble Space Telescope observations of the active asteroid (and Geminid stream parent) 3200 Phaethon when at its closest approach to Earth (separation 0.07 au) in 2017 December. Images were recorded within ~1°?of the orbital plane, providing extra sensitivity to low surface brightness caused by scattering from a large-particle trail. We placed an upper limit on the apparent surface brightness of such a trail at 27.2 mag arcsecond ?2 , corresponding to an in-plane optical depth ?3?×?10 ?9 . No co-moving sources brighter than absolute magnitude 26.3, corresponding to circular equivalent radius ~12 m (albedo 0.12 assumed), were detected. Phaethon is too hot for near-surface ice to survive. We briefly consider the thermodynamic stability of deeply buried ice, finding that its survival would require either a very small (regolith-like) thermal diffusivity (<10 ?8 m 2 s ?1 ), or the unexpectedly recent injection of Phaethon (timescale ?10 6 years) into its present orbit, or both.
机译:我们在2017年12月向哈勃太空望远镜展示了活跃的小行星(和双子座流母体)3200 Phaethon在距地球最近的位置(间隔0.07 au)时的观测结果。图像记录在轨道平面的约1°以内,从而对大粒子迹线的散射引起的低表面亮度提供了额外的灵敏度。我们将这种轨迹的表观表面亮度的上限设定为27.2 mag arcsecond?2,对应于面内光学深度?3?×?10?9。没有检测到比绝对绝对值26.3亮的同动源,其对应于圆形当量半径〜12 m(假定反照率为0.12)。 Phaethon太热,近地表冰无法生存。我们简要地考虑了深埋冰的热力学稳定性,发现其生存将需要很小的(类似于Regolith的)热扩散率(<10?8 m 2 s?1),或者是最近意外注入的Phaethon(时标? 10 6年)进入当前轨道,或两者兼而有之。

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