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首页> 外文期刊>Journal of geophysical research. Planets >Can Formulas Derived From Pyroxenes and/or HEDs Be Used to Determine the Mineralogies of V-Type Asteroids?
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Can Formulas Derived From Pyroxenes and/or HEDs Be Used to Determine the Mineralogies of V-Type Asteroids?

机译:源自辉石和/或HED的公式可以用于确定V型小行星的矿物质学吗?

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摘要

We compare methods for determining the pyroxene mineralogies of V-type near-Earth asteroids from their reflectance spectra. We evaluate whether band centers derived from the spectra of synthetic pyroxenes can be used to achieve greater analytical accuracy than is achieved through the use of band centers derived from the spectra of basaltic achondrites (howardites, eucrites, diogenites or HEDs). We conclude that band centers derived from the reflectance spectra of synthetic pyroxenes with known mineralogies do not provide useful diagnostic information to derive equations for determining accurate pyroxene compositions of V-type asteroids. Band centers from the reflectance spectra of HEDs with known pyroxene mineralogies can be used to derive equations for determining accurate pyroxene compositions of V-type asteroids. HEDs are physical mixtures of a number of different types of pyroxenes and best simulate the surfaces of V-type asteroids. Formulas using the Band I center appear best for determining asteroid pyroxene mineralogies for V-type asteroids due to the current difficulty in doing accurate temperature corrections to the Band II center. Most of the observed V-type near-Earth asteroids have interpreted mineralogies similar to eucrites or howardites. One of the observed near-Earth asteroids could possibly have a surface mineralogy similar to diogenites.
机译:我们比较了从其反射光谱中确定V型接近地球小行星的辉石矿物质学的方法。我们评估是否可以使用源自合成辉石的光谱来实现比通过使用源自玄武岩金吨光谱(Howardites,Howardites,Eucrites,diogenite或Heds)的带中心来实现更高的分析准确性。我们得出的结论是,带有已知矿物质学的合成辉石的反射光谱的带中心没有提供有用的诊断信息来推导方程式以确定V型小行星的准确辉石组成。从已知的辉石矿物学的HEDS反射光谱中的带中心可用于得出方程式,以确定V型小行星的精确辉石组成。 HEDS是多种类型的辉石的物理混合物,并最能模拟V型小行星的表面。使用Band I中心的配方最适合确定小行星辉石矿物质的V型小行星,这是由于当前难度对Band II中心进行准确的温度校正。大多数观察到的V型近地小行星都解释了类似于欧盟或霍华德人的矿物学。观察到的近地小行星之一可能具有类似于二烯岩类似的表面矿物学。

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