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GRAIN TEMPERATURE AND INFRARED EMISSION FROM CARBON DUST OF MIXED COMPOSITION

机译:混合成分碳粉的颗粒温度和红外辐射

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The equilibrium temperature of carbonaceous dust grains whose composition is consistent with IR spectra of diffuse cloud and dense cloud dust has been calculated using random covalent network (RCN) solutions for amorphous dust having a mixed graphite, diamond, and polymeric hydrocarbon composition. An effective medium approximation has been adopted to describe optical and thermal constants for dust compositions consistent with IR absorption spectra. A small amount of sp~2 hybridized carbon in the form of aromatic rings is found to have a significant effect in reducing equilibrium temperature in dust with high diamond/polymer content. This formalism has also been used to calculate nonequilibrium emission spectra of very small grains (VSGs) subjected to stochastic heating in the interstellar radiation field. Such grains are found to emit strongly in sharp IR bands associated with C-H bonds at 3.4 μm and longer wavelengths. The effect of varying graphite/diamond/hydrocarbon composition on nonequilibrium emission by VSGs can also be described using this formalism. The ratio of emission at 12 and 25 μm is found to be high for VSGs with a large fraction of diamond or polymeric hydrocarbon but decreases dramatically for dust with a large sp~2 aromatic component.
机译:已经使用具有混合的石墨,金刚石和聚合物碳氢化合物组成的无定形粉尘的随机共价网络(RCN)解决方案,计算了其成分与散云和浓云粉尘的IR光谱一致的碳质粉尘颗粒的平衡温度。已经采用有效的介质近似值来描述与红外吸收光谱一致的粉尘成分的光学和热常数。发现少量芳香环形式的sp〜2杂化碳对降低金刚石/聚合物含量高的粉尘的平衡温度具有显著作用。这种形式主义也已用于计算在星际辐射场中受到随机加热的非常小的晶粒(VSG)的非平衡发射光谱。发现这些晶粒在与C-H键相关的清晰的IR波段中以3.4μm和更长的波长强烈发射。也可以使用这种形式描述改变石墨/金刚石/碳氢化合物成分对VSGs非平衡发射的影响。对于含有大量金刚石或聚合碳氢化合物的VSG,发现在12和25μm处的发射率较高,而对于具有较大sp〜2芳族成分的粉尘,其发射率则显着降低。

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