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首页> 外文期刊>The Astrophysical Journal. Supplement Series >UTILITARIAN OPACITY MODEL FOR AGGREGATE PARTICLES IN PROTOPLANETARY NEBULAE AND EXOPLANET ATMOSPHERES
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UTILITARIAN OPACITY MODEL FOR AGGREGATE PARTICLES IN PROTOPLANETARY NEBULAE AND EXOPLANET ATMOSPHERES

机译:行星状星云和外星人大气中聚集颗粒的乌拉圭运气模型

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摘要

As small solid grains grow into larger ones in protoplanetary nebulae, or in the cloudy atmospheres of exoplanets, they generally form porous aggregates rather than solid spheres. A number of previous studies have used highly sophisticated schemes to calculate opacity models for irregular, porous particles with sizes much smaller than a wavelength. However, mere growth itself can affect the opacity of the medium in far more significant ways than the detailed compositional and/or structural differences between grain constituents once aggregate particle sizes exceed the relevant wavelengths. This physics is not new; our goal here is to provide a model that provides physical insight and is simple to use in the increasing number of protoplanetary nebula evolution and exoplanet atmosphere models appearing in recent years, yet quantitatively captures the main radiative properties of mixtures of particles of arbitrary size, porosity, and composition. The model is a simple combination of effective medium theory with small-particle closed-form expressions, combined with suitably chosen transitions to geometric optics behavior. Calculations of wavelength-dependent emission and Rosseland mean opacity are shown and compared with Mie theory. The model's fidelity is very good in all comparisons we have made except in cases involving pure metal particles or monochromatic opacities for solid particles with sizes comparable to the wavelength.
机译:当小固体颗粒在原行星状星云或系外行星的阴天大气中长成较大的颗粒时,它们通常形成多孔聚集体,而不是固体球体。许多先前的研究已经使用高度复杂的方案来计算尺寸远小于波长的不规则多孔颗粒的不透明度模型。但是,一旦聚集的粒度超过相关的波长,仅生长本身就可以以比谷物成分之间详细的组成和/或结构差异更重要的方式来影响介质的不透明度。这种物理学并不新鲜。我们的目标是提供一种模型,该模型可提供物理洞察力,并且易于在近年来出现的越来越多的原行星状星云演化和系外行星大气模型中使用,但可以定量捕获任意大小,孔隙率的粒子混合物的主要辐射特性和组成。该模型是有效介质理论与小粒子封闭形式表达式的简单组合,并结合了适当选择的向几何光学行为的过渡。显示了与波长有关的发射和Rosseland平均不透明度的计算,并与Mie理论进行了比较。在我们进行的所有比较中,模型的保真度都非常好,除了涉及纯金属颗粒或单色不透明颗粒(大小与波长可比)的情况下。

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