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首页> 外文期刊>Icarus: International Journal of Solar System Studies >Spectral characterization of analog samples in anticipation of OSIRIS-REx's arrival at Bennu: A blind test study
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Spectral characterization of analog samples in anticipation of OSIRIS-REx's arrival at Bennu: A blind test study

机译:奥西里斯 - 雷克斯到达Bennu的模拟样本的光谱表征:盲试验研究

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摘要

We present spectral measurements of a suite of mineral mixtures and meteorites that are possible analogs for asteroid (101955) Bennu, the target asteroid for NASA's Origins, Spectral Interpretation, Resource Identification, Security, Regolith Explorer (OSIRIS-REx) mission. The sample suite, which includes anhydrous and hydrated mineral mixtures and a suite of chondritic meteorites (CM, CI, CV, CR, and L5), was chosen to characterize the spectral effects due to varying amounts of aqueous alteration and minor amounts of organic material. Our results demonstrate the utility of mineral mixtures for understanding the mixing behavior of meteoritic materials and identifying spectrally dominant species across the visible to near-infrared (VNIR) and thermal infrared (TIR) spectral ranges. Our measurements demonstrate that, even with subtle signatures in the spectra of chondritic meteorites, we can identify diagnostic features related to the minerals comprising each of the samples. Also, the complementary nature of the two spectral ranges regarding their ability to detect different mixture and meteorite components can be used to characterize analog sample compositions better. However, we observe differences in the VNIR and TIR spectra between the mineral mixtures and the meteorites. These differences likely result from (1) differences in the types and physical disposition of constituents in the mixtures versus in meteorites, (2) missing phases observed in meteorites that we did not add to the mixtures, and (3) albedo differences among the samples. In addition to the initial characterization of the analog samples, we will use these spectral measurements to test phase detection and abundance determination algorithms in anticipation of mapping Bennu's surface properties and selecting a sampling site.
机译:我们呈现了一系列矿物混合物和陨石的光谱测量,即小行星(101955)Bennu的可能类似物,用于NASA的起源,光谱解释,资源识别,安全性,rootith Explorer(Osiris-rex)任务的目标小行星。选择包含无水和水合矿物混合物和软骨态常规(CM,C 1,CV,Cr和L5)的样品套圈,以表征由于不同量的水性改变和少量有机材料的光谱效应。我们的结果证明了矿物混合物的效用,以了解陨石材料的混合行为,并在近红外(VNIR)和热红外(TIR)光谱范围内识别横跨可见的光谱显性物质。我们的测量表明,即使在软体菊酯的光谱中具有细微签名,我们也可以识别与包含每个样品的矿物质相关的诊断特征。而且,关于它们检测不同混合物和陨石组分的能力的两个光谱范围的互补性可用于更好地表征模拟样品组合物。然而,我们观察矿物混合物与陨石之间的VNIR和TIR光谱的差异。这些差异可能来自(1)组分的类型和物理处置的差异与陨石中的组分的类型和物理处置,(2)在陨石中观察到的缺失相,我们没有添加到混合物中,并(3)样品中的Albedo差异。除了模拟样本的初始表征之外,我们将使用这些光谱测量来测试映射Bennu的表面特性并选择采样站点的预期映射和丰度确定算法。

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    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

    Univ Oxford Clarendon Lab Atmospher Ocean &

    Planetary Phys Parks Rd Oxford OX1 3PU England;

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  • 正文语种 eng
  • 中图分类 太阳系;
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