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CONSTRAINTS ON THE NUCLEUS AND DUST PROPERTIES FROM MID-INFRARED IMAGING OF COMET HYAKUTAKE

机译:彗星H草的中红外成像对核和粉尘性质的约束

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摘要

We use Mie scattering theory to determine the expected thermal emission from dust grains in cometary comae and apply these results to mid-infrared images of comet Hyakutake (C/1996 B2) obtained preperihelion in 1996 March. Calculations were performed for dust grains in the size range from 0.1 to 10 μm for two different compositions: amorphous olivine (a silicate glass) and an organic residue mixture. The resulting emission efficiencies are complicated functions of wavelength and particle size and are significantly different for the two materials in question. The Hyakutake data set consists of three nights of high-resolution imaging (100-150 km pixel~(-1) at the comet) of the inner coma at 8.7, 11.7, 12.5, and 19.7 μm. Attempts to fit the observed colors (ratios of fluxes at different wavelengths) using a single grain composition failed. However, fits to the data were achieved for all three nights using a mixture of ~1 μm olivine grains and ~7 μm organic grains. The resulting olivine mass fraction was between 8% and 16% of the total dust mass-loss rate. We also estimate the radius of the nucleus to be r = 2.1 ± 0.4 km.
机译:我们使用米氏散射理论来确定彗星彗星尘埃的预期热辐射,并将这些结果应用于1996年3月获得的近顶彗星Hyakutake彗星(C / 1996 B2)的中红外图像。对于两种不同的组成:无定形橄榄石(硅酸盐玻璃)和有机残留物混合物,对尺寸范围从0.1到10μm的尘埃颗粒进行了计算。所产生的发射效率是波长和粒径的复杂函数,并且对于所讨论的两种材料而言是显着不同的。 Hyakutake数据集由三个晚上的内彗形慧像成像(彗星100-150 km像素〜(-1)),分别为8.7、11.7、12.5和19.7μm。尝试使用单个晶粒成分拟合观察到的颜色(不同波长的通量比)失败。但是,使用〜1μm橄榄石颗粒和〜7μm有机颗粒的混合物,对所有三个晚上的数据均进行了拟合。所得橄榄石质量分数为总粉尘质量损失率的8%至16%。我们还估计原子核的半径为r = 2.1±0.4 km。

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