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Interstellar Ices

机译:星际谢氏猴子

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Currently ~36 different absorption bands have been detected in the infrared spectra of cold, dense interstellar and circumstellar environments. These are attributed to the vibrational transitions of ~17 different molecules frozen on dust grains. We review identification issues and summarize the techniques required to extract information on the physical and chemical evolution of these ices. Both laboratory simulations and line of sight studies are essential. Examples are given for ice bands observed toward high mass protostars, field stars and recent work on ices in disks surrounding low mass protostars. A number of clear trends have emerged in recent years. One prominent ice component consists of an intimate mixture between H2O, CH3OH and CO2 molecules. Apparently a stable balance exists between low temperature hydrogenation and oxidation reactions on grain surfaces. In contrast, an equally prominent ice component, consisting almost entirely of CO, must have accreted directly from the gas phase. Thermal processing, i.e. evaporation and crystallization, proves to be readily traceable in both these ice components. The spectroscopic signatures of energetic processing by cosmic rays and high energy photons from nearby protostars are weaker and not as well understood. A fundamental limitation in detecting complex, energetically produced (and also some simple) species is blending of weak features in the spectra of protostars. Sophisticated techniques are required to extract information from blended features. We conclude with a summary of key goals for future research and prospects for observations of ices using future instrumentation, including SIRTF/IRS.
机译:目前在寒冷,茂密的星际和周边环境的红外光谱中检测到36种不同的吸收带。这些归因于在粉尘晶粒上冷冻的〜17种不同分子的振动过渡。我们审查了识别问题并总结了提取关于这些冰的物理和化学演进信息所需的技术。实验室模拟和视线研究都是必不可少的。对于高质量抗议区,野外恒星和近期工作的冰柱中观察到的冰带给出了示例。近年来出现了许多明确的趋势。一个突出的冰组件由H 2 O,CH 3 OH和CO 2分子之间的私密混合物组成。显然存在稳定的平衡,在晶粒表面的低温氢化和氧化反应之间存在稳定的平衡。相反,同样突出的冰部件,几乎完全由CO组成,必须直接从气相中凸出。热处理,即蒸发和结晶,证明在这两种冰部件中都可以易于追溯。来自附近质子的宇宙射线和高能量光子的能量加工的光谱签名较弱,并且也不太了解。检测复杂,积极生产(以及一些简单)物种的基本限制是恒星光谱中的弱特征。从混合功能中提取信息需要复杂的技术。我们的结论是,未来的研究和前景的关键目标摘要,使用未来仪器观察谢谢,包括SIRTF / IRS。

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