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陨石与近地小行星之间的成分差异。

Compositional differences between meteorites and near-Earth asteroids.

作者信息

Vernazza P, Binzel R P, Thomas C A, DeMeo F E, Bus S J, Rivkin A S, Tokunaga A T

机构信息

Research and Scientific Support Department, European Space Agency, Keplerlaan 1, 2201 AZ Noordwijk, The Netherlands.

出版信息

Nature. 2008 Aug 14;454(7206):858-60. doi: 10.1038/nature07154.

Abstract

Understanding the nature and origin of the asteroid population in Earth's vicinity (near-Earth asteroids, and its subset of potentially hazardous asteroids) is a matter of both scientific interest and practical importance. It is generally expected that the compositions of the asteroids that are most likely to hit Earth should reflect those of the most common meteorites. Here we report that most near-Earth asteroids (including the potentially hazardous subset) have spectral properties quantitatively similar to the class of meteorites known as LL chondrites. The prominent Flora family in the inner part of the asteroid belt shares the same spectral properties, suggesting that it is a dominant source of near-Earth asteroids. The observed similarity of near-Earth asteroids to LL chondrites is, however, surprising, as this meteorite class is relatively rare ( approximately 8 per cent of all meteorite falls). One possible explanation is the role of a size-dependent process, such as the Yarkovsky effect, in transporting material from the main belt.

摘要

了解地球附近小行星群体(近地小行星及其潜在危险小行星子集)的性质和起源,既具有科学意义,又具有实际重要性。一般认为,最有可能撞击地球的小行星的成分应反映最常见陨石的成分。在此我们报告,大多数近地小行星(包括潜在危险子集)具有与称为LL球粒陨石的陨石类别在数量上相似的光谱特性。小行星带内部著名的弗洛拉族小行星具有相同的光谱特性,这表明它是近地小行星的主要来源。然而,近地小行星与LL球粒陨石观察到的相似性令人惊讶,因为这种陨石类别相对稀少(约占所有陨石坠落的8%)。一种可能的解释是,诸如雅科夫斯基效应等与尺寸相关的过程在将物质从主带输送过程中所起的作用。

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