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首页> 外文期刊>The astronomical journal >Thermophysical Modeling of NEOWISE Observations of DESTINY + Targets Phaethon and 2005 UD
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Thermophysical Modeling of NEOWISE Observations of DESTINY + Targets Phaethon and 2005 UD

机译:NeoWise + Targets Phaethon和2005 UD的NeoWise观测热物理学建模

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摘要

Thermophysical models allow for improved constraints on the physical and thermal surface properties of asteroids beyond what can be inferred from more simple thermal modeling, provided that a sufficient number of observations is available. We present thermophysical modeling results of observations from the Near-Earth Object WISE (NEOWISE) mission for two near-Earth asteroids which are the targets of the DESTINY + flyby mission: (3200) Phaethon and (155140) 2005 UD. Our model assumes a rotating, cratered, spherical surface, and employs a Monte Carlo Markov Chain to explore the multidimensional parameter space of the fit. We find an effective spherical diameter for Phaethon of - + 4.6 0.3 0.2 km, a geometric albedo of p V ?=?0.16?±?0.02, and a thermal inertia Γ?=?880 - + 330 580 , using five epochs of NEOWISE observations. The best model fit for (155140) 2005 UD was less well constrained due to only having two NEOWISE observation epochs, giving a diameter of 1.2?±?0.4km and a geometric albedo of p V ?=?0.14?±?0.09.
机译:热物理模型允许改进的限制小行星的物理和热表面性质,超出了可以从更简单的热建模推断出的小行星的物理和热表面特性,只要有足够数量的观察结果即可。我们提出了来自近地球对象(NeoWise)任务的热物理建模结果,这对于两个近地球小行星为命运+飞比任务的目标:(3200)Phaethon和(155140)2005 UD。我们的模型假设旋转,起跑运动员,球面,并采用蒙特卡罗马尔可夫链条探索拟合的多维参数空间。我们找到了磷酸的有效球形直径 - + 4.6 0.3 0.2 km,Pvα的几何反照℃?= 0.16?±0.02,以及热惯性γ?=?880 - + 330 580,使用Neochs的五个时期观察。最佳型号适合(155140)2005 UD由于仅具有两个Neowise观察时期,其直径为1.2?±0.4km和P = 0.14的几何反照,而且是P = 0.14?±0.09。

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