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Spaceborne VIR spectroscopy of small planetary bodies and inherent clues to their composition: a review and discussions of future requirements

机译:小行星体的星载病毒谱和组成的固有线索:对未来要求的审查和讨论

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The possibility to study small bodies in the planetary system by means of flybys, orbital observations, and sample return by space missions has potentiated our knowledge about them. Compared to differentiated objects, whose materials have been greatly altered during the evolution of the solar system, they belong to those objects which allow the determination of the state of matter of the early planetary system. Depending on the heliocentric distance of their origin and their further development they exhibit different pristine compositions that include minerals, ices, and organics. Space missions such as Rosetta to comet 67P/Churyumov-Gerasimenko, Hayabusa2 operating at 162173 Ryugu, and Osiris-REx exploring 101955 Bennu have delivered and are delivering comprehensive data including Visible and Infrared/VIR (i.e. Visible and Near-Infrared/VNIR and Mid-Infrared/MIR) spectral information. However, the compositional analysis from VIR spectra is not straightforward. Dark and fine-grained materials influence the spectral properties considerably. Comparative laboratory investigations of analog materials and spectro-photometric modeling form the basis for a data analysis related to the respective planetary body. This paper summarizes selected results of these studies and discusses the scientific and instrumental requirements for future spaceborne VIR spectral studies of minor bodies like Comet Interceptor, AIDA, MMX, Lucy and further planned missions in the solar system.
机译:通过氟比斯,轨道观察和空间任务的样品返回研究行星系统中的小型体系的可能性促使我们对他们的了解。与差异化物体相比,其材料在太阳系的演变期间大大改变,它们属于那些允许确定早期行星系统的物质状态的物体。取决于它们的起源的起伏距离及其进一步的发展,它们表现出不同的原始组合物,包括矿物质,冰和有机物。 Rosetta为彗星的空间任务67p / churyumov-gerasimenko,Hayabusa2在ryugu的162173和Osiris-rex探索101955 Bennu探索,正在提供全面的数据,包括可见和红外/ vir(即可见和近红外/ vnir和mid -Infrared / mir)光谱信息。然而,来自Vir光谱的组成分析并不简单。暗和细粒度的材料显着影响光谱性能。模拟材料和光谱 - 光度建模的比较实验室研究形成了与各个行星体相关的数据分析的基础。本文总结了这些研究的选定结果,并探讨了对太阳系中的彗星拦截器,AIDA,MMX,Lucy和进一步规划的小型体内的未来星球传播病毒谱研究的科学和工具要求。

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