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The composition of dust in Jupiter-family comets inferred from infrared spectroscopy

机译:红外光谱法推断木星家族彗星中的尘埃组成

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We review the composition of Jupiter-family comet (JFC) dust as inferred from infrared spectroscopy. We find that JFCs have 10 μm silicate emission features with fluxes roughly 20-25% over the dust continuum (emission strength 1.20-1.25), similar to the weakest silicate features in Oort Cloud (OC) comets. We discuss the grain properties that alter the silicate emission feature (composition, size, and structure/shape), and emphasize that thermal emission from the comet nucleus can have significant influence on the derived silicate emission strength. Recent evidence suggests that grain porosity is the is different between JFCs and OC comets, but more observations and models of silicates in JFCs are needed to determine if a consistent set of grain parameters can explain their weak silicate emission features. Models of 8 m telescope and Spitzer Space Telescope observations have shown that JFCs have crystalline silicates with abundances similar to or less than those found in OC comets, although the crystalline silicate mineralogy of comets 9P/Tempel and C/1995 O1 (Hale-Bopp) differ from each other in Mg and Fe content. The heterogeneity of comet nuclei can also be assessed with mid-infrared spectroscopy, and we review the evidence for heterogeneous dust properties in the nucleus of comet 9P/Tempel. Models of dust formation, mixing in the solar nebula, and comet formation must be able to explain the observed range of Mg and Fe content and the heterogeneity of comet 9P/Tempel, although more work is needed in order to understand to what extent do comets 9P/Tempel and Hale-Bopp represent comets as a whole.
机译:我们回顾了由红外光谱推断出的木星族彗星(JFC)尘埃的成分。我们发现JFC具有10μm的硅酸盐排放特征,在粉尘连续体上的通量约为20-25%(排放强度1.20-1.25),类似于奥尔特云(OC)彗星中最弱的硅酸盐特征。我们讨论了改变硅酸盐排放特征(组成,大小和结构/形状)的晶粒特性,并强调了彗星核的热排放可能对衍生的硅酸盐排放强度产生重大影响。最近的证据表明,JFC和OC彗星的孔隙率是不同的,但是需要更多的观测和JFC中硅酸盐的模型来确定一致的晶粒参数集是否可以解释其弱的硅酸盐排放特征。 8 m望远镜和Spitzer空间望远镜观测模型表明,JFCs的晶体硅酸盐的丰度与OC彗星中的相近或比其少,尽管9P / Tempel和C / 1995 O1(Hale-Bopp)彗星的晶体硅酸盐矿物学也是如此。镁和铁的含量互不相同。彗星核的异质性也可以通过中红外光谱来评估,我们将对9P / Tempel彗星核中异质尘埃性质的证据进行综述。尘埃形成,太阳星云中的混合以及彗星形成的模型必须能够解释观测到的Mg和Fe含量范围以及9P / Tempel彗星的异质性,尽管还需要做更多的工作才能了解彗星的作用程度9P / Tempel和Hale-Bopp总体上代表彗星。

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