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关于彗星形成区域的温度和气体成分。

On the temperature and gas composition in the region of comet formation.

作者信息

Bar-Nun A, Kleinfeld I

机构信息

Department of Geophysics and Planetary Sciences, Tel Aviv University, Israel.

出版信息

Icarus. 1989;80:243-53. doi: 10.1016/0019-1035(89)90136-x.

Abstract

The findings of the Giotto and Vega spacecrafts on the gas composition of comet Halley, together with an experimental study on the trapping of gas mixtures in amorphous water ice, enable estimation of the gas composition and temperature in the region of comet Halley's formation: If Halley was formed in the solar nebula by condensation of water vapor in the presence of gas, in the region of its formation the CO/CH4 ratio had to be at least 100 and the temperature about 48 K. The ice particles that formed the comet could not have condensed at a higher temperature and subsequently cool down because then the 7% CO found as a parent molecule could not have been trapped in the ice. A approximately 48 K formation implies that the ice was in amorphous form. This temperature is surprisingly close to the temperatures observed by IRAS for the circumstellar dust shells around alpha PsA (55 K) and epsilon Eri (45 K) and supports the suggestion that short-period comets were formed outside the region of planet formation. The CO content of comet Halley and sensitivity to explosion of irradiated, ice-coated, interstellar grains seem to exclude the possibility of their direct incorporation into comets. Yet, they might have provided the condensed organics--the "CHON" materials.

摘要

乔托号和织女星号宇宙飞船对哈雷彗星气体成分的探测结果,以及对气体混合物在无定形水冰中捕获情况的实验研究,使得人们能够估算出哈雷彗星形成区域的气体成分和温度:如果哈雷彗星是在太阳星云里,在有气体存在的情况下由水蒸气凝结形成的,那么在其形成区域,一氧化碳与甲烷的比例至少为100,温度约为48开尔文。形成彗星的冰粒不可能在更高的温度下凝结,然后再冷却下来,因为那样的话,作为母体分子被发现的7%的一氧化碳就不可能被困在冰中。大约48开尔文的形成温度意味着冰是无定形的。这个温度惊人地接近红外天文卫星(IRAS)观测到的围绕宝瓶座α星(55开尔文)和波江座ε星(45开尔文)的星周尘埃壳的温度,并支持了短周期彗星是在行星形成区域之外形成的这一观点。哈雷彗星的一氧化碳含量以及对辐照的、覆冰的星际尘埃颗粒爆炸的敏感度似乎排除了它们直接并入彗星的可能性。然而,它们可能提供了凝聚态有机物——“CHON”物质。

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