On the outgassing profile of Comet Hale-Bopp

被引:16
作者
Flammer, KR [1 ]
Mendis, DA
Houpis, HLF
机构
[1] Univ Calif San Diego, Dept Elect & Comp Engn, La Jolla, CA 92093 USA
[2] Sierra Coll, Dept Astron, Rocklin, CA 95677 USA
关键词
comets; individual; (Hale-Bopp); molecular processes;
D O I
10.1086/305237
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
When Comet Hale-Bopp was first discovered at a heliocentric distance of similar to 7.2 AU, its activity appeared to be controlled by the outgassing of the highly volatile CO molecule, Its gas production remained CO-driven until about 4 AU when the outgassing became controlled by the less volatile H2O molecule. While the outgassing around this distance is consistent with the sublimation from a large "dirty snowball" composed dominantly of H2O, the subsequent outgassing at smaller heliocentric distance up to perihelion (d approximate to 0.914 AU) falls consistently below the predictions of such a model. In this paper, we use the earliest chemical differentiation model of the cometary nucleus developed by Houpis et al., with a few modifications, to show that the continuous chemical differentiation of a deepening layer of the cometary nucleus which has made multiple passages into the inner solar system can explain comet Hale-Bopp's observed pre-perihelion production rate curve. It also predicts a hysteresis with the gas production rate profiles falling systematically lower post-perihelion. The model suggests that comet Hale-Bopp is a complex combination of dust, clathrate, and volatile (mainly CO), the gas production of which changes from being CO-driven to H2O driven around 4 AU. Furthermore, the thermal insulation provided by a growing dust mantle inside similar to 3.5 AU causes the H2O production rate curve to flatten-out.
引用
收藏
页码:822 / 827
页数:6
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