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Spitzer spectral observations of the deep impact ejecta.

机译:深冲射弹的斯皮策光谱观测。

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Spitzer Space Telescope imaging spectrometer observations of comet 9P/Tempel 1 during the Deep Impact encounter returned detailed, highly structured, 5- to 35-micrometer spectra of the ejecta. Emission signatures due to amorphous and crystalline silicates, amorphous carbon, carbonates, phyllosilicates, polycyclic aromatic hydrocarbons, water gas and ice, and sulfides were found. Good agreement is seen between the ejecta spectra and the material emitted from comet C/1995 O1 (Hale-Bopp) and the circumstellar material around the young stellar object HD100546. The atomic abundance of the observed material is consistent with solar and C1 chondritic abundances, and the dust-to-gas ratio was determined to be greater than or equal to 1.3. The presence of the observed mix of materials requires efficient methods of annealing amorphous silicates and mixing of high- and low-temperature phases over large distances in the early protosolar nebula.
机译:Spitzer太空望远镜成像光谱仪在9D撞击期间对9P / Tempel 1彗星的观测返回了详细的,高度结构化的5至35微米的射流光谱。发现了由于无定形和结晶性硅酸盐,无定形碳,碳酸盐,层状硅酸盐,多环芳烃,水煤气和冰以及硫化物引起的排放特征。观测到的喷射光谱与彗星C / 1995 O1(Hale-Bopp)发射的物质以及年轻恒星物体HD100546周围的绕星物质之间有很好的一致性。所观察到的材料的原子丰度与太阳和C1软骨晶的丰度一致,并且尘/气比被确定为大于或等于1.3。观察到的材料混合物的存在需要对非晶态硅酸盐进行退火的有效方法,并需要在早期的原生太阳星云中远距离混合高温相和低温相。

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