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首页> 外文期刊>Planetary and space science >Light scattering by complex particles in the Moon's exosphere: Toward a taxonomy of models for the realistic simulation of the scattering behavior of lunar dust
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Light scattering by complex particles in the Moon's exosphere: Toward a taxonomy of models for the realistic simulation of the scattering behavior of lunar dust

机译:月球外气层中复杂粒子的光散射:建立模型的分类法,以实际模拟月尘的散射行为

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摘要

It is suspected that the lunar exosphere has a dusty component dispersed above the surface by various physical mechanisms. Most of the evidence for this phenomenon comes from observations of "lunar horizon glow" (LHG), which is thought to be produced by the scattering of sunlight by this exospheric dust. The characterization of exospheric dust populations at the Moon is key to furthering our understanding of fundamental surface processes, as well as a necessary requirement for the planning of future robotic and human exploration. We present a model to simulate the scattering of sunlight by complex lunar dust grains (i.e. grains that are non-spherical and can be inhomogeneous in composition) to be used in the interpretation of remote sensing data from current and future lunar missions. We numerically model lunar dust grains with several different morphologies and compositions and compute their individual scattering signatures using the Discrete Dipole Approximation (DDA). These scattering properties are then used in a radiative transfer code to simulate the light scattering due to a dust size distribution, as would likely be observed in the lunar exosphere at high altitudes 10's of km. We demonstrate the usefulness and relevance of our model by examining mode: irregular grains, aggregate of spherical monomers and spherical grains with nano-phase iron inclusions. We subsequently simulate the scattering by two grain size distributions (0.1 and 0.3 μm radius), and show the results normalized per-grain. A similar methodology can also be applied to the analysis of the LHG observations, which are believed to be produced by scattering from larger dust grains within about a meter of the surface. As expected, significant differences in scattering properties are shown between the analyses employing the widely used Mie theory and our more realistic grain geometries. These differences include large variations in intensity as well as a positive polarization of scattered sunlight caused by non-spherical grains. Positive polarization occurs even when the grain size is small compared to the wavelength of incident sunlight, thus confirming that the interpretation of LHG based on Mie theory could lead to large errors in estimating the distribution and abundances of exospheric dust.
机译:怀疑月球外层具有通过各种物理机制分散在地表上方的尘土成分。这种现象的大多数证据来自对“月球地平线发光”(LHG)的观察,该现象被认为是由大气外尘埃散射太阳光而产生的。表征月球大气圈尘埃的数量是进一步加深我们对基本地表过程的理解的关键,也是规划未来机器人和人类探索的必要要求。我们提出了一个模型来模拟复杂的月球尘埃颗粒(即非球形且成分不均一的颗粒)对太阳光的散射,该模型将用于解释当前和未来月球任务的遥感数据。我们对具有几种不同形态和组成的月尘颗粒进行数值建模,并使用离散偶极近似(DDA)计算它们的单个散射特征。然后将这些散射特性用于辐射传递代码中,以模拟由于尘埃尺寸分布而引起的光散射,这可能会在月球外圈10公里高空出现。我们通过研究以下模式证明了该模型的有用性和相关性:不规则晶粒,球形单体的聚集体和具有纳米相铁夹杂物的球形晶粒。随后,我们通过两个粒度分布(半径为0.1和0.3μm)模拟了散射,并显示了对每粒颗粒进行归一化的结果。类似的方法也可以应用于LHG观测值的分析,据信这是通过在约一米的表面内从较大的尘埃颗粒散射而产生的。不出所料,在采用广泛使用的Mie理论的分析与我们更实际的晶粒几何形状之间,在散射特性上显示出显着差异。这些差异包括强度的巨大变化以及由非球形晶粒引起的散射阳光的正极化。即使当晶粒尺寸比入射太阳光的波长小时,也会发生正极化,因此证实了基于米氏理论对LHG的解释可能会导致估算大气外尘埃的分布和丰度方面的较大误差。

著录项

  • 来源
    《Planetary and space science》 |2011年第14期|p.1804-1814|共11页
  • 作者单位

    San Jose State University Research Foundation, San Jose, California, USA,NASA Ames Research Center, Moffett Field, California, USA,NASA Lunar Science Institute, NASA Research Park, Moffet Field, California, USA;

    New Mexico State University, Las Cruces, New Mexico, USA,NASA Lunar Science Institute, NASA Research Park, Moffet Field, California, USA;

    Coddard Earth Sciences and Technology Center, University of Maryland Baltimore County, Baltimore, Maryland, USA,NASA Coddard Space Flight Center, Greenbelt, Maryland, USA,NASA Lunar Science Institute, NASA Research Park, Moffet Field, California, USA;

    NASA Ames Research Center, Moffett Field, California, USA,NASA Lunar Science Institute, NASA Research Park, Moffet Field, California, USA;

    NASA Ames Research Center, Moffett Field, California, USA,NASA Lunar Science Institute, NASA Research Park, Moffet Field, California, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    moon; dust; radiative transfer; scattering; polarization;

    机译:月球;粉尘;辐射传递;散射;极化;

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