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Interstellar Chemistry Special FeatureInaugural Article: Chemistry in low-mass protostellar and protoplanetary regions

机译:星际化学专刊就职文章:低质量的原恒星和原行星区域的化学

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摘要

When interstellar clouds collapse to form new stars and planets, the surrounding gas and dust become part of the infalling envelopes and rotating disks, thus providing the basic material from which new solar systems are formed. Instrumentation to probe the chemistry in low-mass star-forming regions has only recently become available. The results of a systematic program to study the abundances in solar-mass protostellar and protoplanetary regions are presented. Surveys at submillimeter and infrared wavelengths reveal a rich chemistry, including simple and complex (organic) gases, ices, polycyclic aromatic hydrocarbons, and silicates. Each of these species traces different aspects of the physical and chemical state of the objects as they evolve from deeply embedded protostars to pre-main sequence stars with planet-forming disks. Quantitative information on temperatures, densities, and abundances is obtained through molecular excitation and radiative transfer models as well as from analysis of solid-state line profiles. The chemical characteristics are dominated by freeze-out in the coldest regions and ice evaporation in the warmer zones. In the surface layers of disks, UV radiation controls the chemistry. The importance of complementary laboratory experiments and calculations to obtain basic molecular data is emphasized.
机译:当星际云塌陷形成新的恒星和行星时,周围的气体和尘埃成为下降的包层和旋转盘的一部分,从而为形成新的太阳系提供了基本物质。用于探测低质量恒星形成区域化学反应的仪器直到最近才可用。介绍了一个系统程序的结果,该程序用于研究太阳质量的原恒星和原行星区域的丰度。在亚毫米和红外波长下进行的调查显示出丰富的化学成分,包括简单和复杂的(有机)气体,冰,多环芳烃和硅酸盐。当这些物种从深埋的原恒星演变为具有行星形成盘的主序恒星时,它们中的每一个都追踪物体的物理和化学状态的不同方面。有关温度,密度和丰度的定量信息可通过分子激发和辐射转移模型以及对固态谱线的分析获得。化学特性主要由最冷的区域中的冻结和较热的区域中的冰蒸发所决定。在磁盘的表面层中,紫外线辐射控制化学过程。强调了补充实验室实验和计算以获得基本分子数据的重要性。

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