Suppr超能文献

观测、陨石与模型:(16) Psyche 的成分与形成的飞行前评估

Observations, Meteorites, and Models: A Preflight Assessment of the Composition and Formation of (16) Psyche.

作者信息

Elkins-Tanton L T, Asphaug E, Bell J F, Bercovici H, Bills B, Binzel R, Bottke W F, Dibb S, Lawrence D J, Marchi S, McCoy T J, Oran R, Park R S, Peplowski P N, Polanskey C A, Prettyman T H, Russell C T, Schaefer L, Weiss B P, Wieczorek M A, Williams D A, Zuber M T

机构信息

Arizona State University Phoenix AZ USA.

University of Arizona Tucson AZ USA.

出版信息

J Geophys Res Planets. 2020 Mar;125(3):e2019JE006296. doi: 10.1029/2019JE006296. Epub 2020 Mar 25.

Abstract

Some years ago, the consensus was that asteroid (16) Psyche was almost entirely metal. New data on density, radar properties, and spectral signatures indicate that the asteroid is something perhaps even more enigmatic: a mixed metal and silicate world. Here we combine observations of Psyche with data from meteorites and models for planetesimal formation to produce the best current hypotheses for Psyche's properties and provenance. Psyche's bulk density appears to be between 3,400 and 4,100 kg m. Psyche is thus predicted to have between ~30 and ~60 vol% metal, with the remainder likely low-iron silicate rock and not more than ~20% porosity. Though their density is similar, mesosiderites are an unlikely analog to bulk Psyche because mesosiderites have far more iron-rich silicates than Psyche appears to have. CB chondrites match both Psyche's density and spectral properties, as can some pallasites, although typical pallasitic olivine contains too much iron to be consistent with the reflectance spectra. Final answers, as well as resolution of contradictions in the data set of Psyche physical properties, for example, the thermal inertia measurements, may not be resolved until the NASA Psyche mission arrives in orbit at the asteroid. Despite the range of compositions and formation processes for Psyche allowed by the current data, the science payload of the Psyche mission (magnetometers, multispectral imagers, neutron spectrometer, and a gamma-ray spectrometer) will produce data sets that distinguish among the models.

摘要

几年前,人们普遍认为小行星(16) Psyche几乎完全由金属构成。关于密度、雷达特性和光谱特征的新数据表明,这颗小行星可能更加神秘莫测:它是一个金属与硅酸盐混合的世界。在此,我们将对Psyche的观测数据与陨石数据以及小行星形成模型相结合,以得出目前关于Psyche的性质和起源的最佳假设。Psyche的整体密度似乎在3400至4100千克/立方米之间。因此,预计Psyche的金属含量在约30%至约60%(体积)之间,其余部分可能是低铁硅酸盐岩石,孔隙率不超过约20%。尽管中陨铁石的密度与之相似,但它们不太可能与整体的Psyche类似,因为中陨铁石所含的富铁硅酸盐比Psyche似乎含有的要多得多。CB球粒陨石与Psyche的密度和光谱特性都相符,一些橄榄陨铁石也是如此,不过典型的橄榄陨铁石橄榄石含铁量过高,与反射光谱不一致。在NASA的Psyche任务抵达该小行星轨道之前,最终答案以及Psyche物理性质数据集中的矛盾(例如热惯量测量结果)可能无法得到解决。尽管目前的数据允许Psyche有多种成分和形成过程,但Psyche任务的科学载荷(磁力计、多光谱成像仪、中子光谱仪和伽马射线光谱仪)将产生能够区分不同模型的数据集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/baa3/7375145/cab9852e7bc3/JGRE-125-e2019JE006296-g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验