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Theoretical Polarimetric Responses of Fractal Aggregates, in Relation with Experimental Studies of Dust in the Solar System

机译:分形聚集体的理论极化响应与太阳系粉尘实验研究的关系

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Dust particles in the solar system (e.g. atmospheric hazes, cometary or interplanetary dust, regolith) are likely to be irregular aggregates whose light scattering properties (phase functions of polarization) are drastically different from those of Mie spheres. However, the observation of the light they scatter may provide informations on their physical properties. If the mechanisms which lead to aggregation are invariant with time, the aggregates are likely to be fractal particles made up from individual monomers. Computations, developped in relation with the CODAG experiment, are performed using a Discrete Dipole Approximation, and each monomer is described by one or more dipoles. When the particles are formed from a few monomers made up of numerous dipoles, the polarimetric response of the aggregate is similar to the one of the constituent monomer. When the particles are formed from many monomers made up of individual dipoles, the phase curves are similar to those observed in the solar system. Our caculations suggest that dust particles have a fractal dimension of the order of 2 (Ballistic Cluster-Cluster Aggregation), and that the values of the real and imaginary part of the complex refractive index of the constituent material are high. Those results are in agreement with laboratory measurements on samples representative of astronomical organics and minerals.
机译:太阳系中的尘埃颗粒(例如,大气雾度,彗星或行星际尘埃,重灰石)可能是不规则的聚集体,其光散射特性(偏振的相位函数)与米氏球的散射特性完全不同。但是,观察它们散射的光可能会提供有关其物理性质的信息。如果导致聚集的机制随时间不变,则聚集体很可能是由单个单体组成的分形颗粒。与CODAG实验有关的计算是使用离散偶极近似进行的,每种单体用一个或多个偶极描述。当颗粒由由许多偶极子组成的一些单体形成时,聚集体的极化响应类似于组成单体之一。当粒子由许多由单个偶极子组成的单体形成时,相曲线类似于在太阳系中观察到的那些。我们的计算结果表明,尘埃粒子的分形维数约为2(弹道聚类-聚类聚集),并且构成材料的复折射率的实部和虚部的值都很高。这些结果与代表天文有机物和矿物的样品的实验室测量结果一致。

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