论文标题
探索外星颗粒中的难治性有机物
Exploring refractory organics in extraterrestrial particles
论文作者
论文摘要
在陨石和彗星中检测到的有机化合物的起源,其中一些可以作为地球上生命的前体,仍然是一个悬而未决的问题。本研究的目的是通过将实验室制造的难治性有机残留物的红外光谱与星标颗粒返回的彗星颗粒光谱进行比较,在揭示外星颗粒的有机材料的性质和组成方面又迈出了一步。我们的结果加强了通过太阳星云中分子冰的能量和热处理来形成难治性有机物的途径的想法。在进入太阳星云之前,某些有机材料也已经形成了某些有机材料。所研究的外星颗粒的大多数IR“有机”带可以在实验室有机残基的光谱中复制。我们确认在外星颗粒中检测水,硝酸盐,碳氢化合物和碳酸盐,并将其与太阳星云外部区域中颗粒的形成位置联系起来。为了阐明该物种的起源,需要与实验室测量(如本文提出的)结合使用实验室测量。因此,这项研究提出了地球上水和有机化合物的起源和未来协作实验室和观察项目的动力的又一部分。
The origin of organic compounds detected in meteorites and comets, some of which could serve as precursors of life on Earth, still remains an open question. The aim of the present study is to make one more step in revealing the nature and composition of organic materials of extraterrestrial particles by comparing infrared spectra of laboratory-made refractory organic residues to the spectra of cometary particles returned by the Stardust mission, interplanetary dust particles, and meteorites. Our results reinforce the idea of a pathway for the formation of refractory organics through energetic and thermal processing of molecular ices in the solar nebula. There is also the possibility that some of the organic material formed already in the parental molecular cloud before it entered the solar nebula. The majority of the IR "organic" bands of the studied extraterrestrial particles can be reproduced in the spectra of the laboratory organic residues. We confirm the detection of water, nitriles, hydrocarbons, and carbonates in extraterrestrial particles and link it to the formation location of the particles in the outer regions of the solar nebula. To clarify the genesis of the species, high-sensitivity observations in combination with laboratory measurements like those presented in this paper are needed. Thus, this study presents one more piece of the puzzle of the origin of water and organic compounds on Earth and motivation for future collaborative laboratory and observational projects.