论文标题

将高空间分辨率带到远红外 - 天体物理学的巨大飞跃

Bringing high spatial resolution to the Far-infrared -- A giant leap for astrophysics

论文作者

Linz, Hendrik, Beuther, Henrik, Gerin, Maryvonne, Goicoechea, Javier R., Helmich, Frank, Krause, Oliver, Liu, Yao, Molinari, Sergio, Ossenkopf-Okada, Volker, Pineda, Jorge, Sauvage, Marc, Schinnerer, Eva, van der Tak, Floris, Wiedner, Martina

论文摘要

远红外(FIR)制度是少数没有具有亚弧形空间分辨率的天文数据的波长范围之一。 Spica,Millimetron和O.S.T.等中期卫星项目都没有将解决这种疾病。然而,对于许多研究领域,从高度兴奋的一氧化碳(CO),轻液体,尤其是从水线中取出的原子细节线的高空间和光谱分辨率的信息将为变革科学打开大门。一个主要主题是追踪水在原始星际磁盘中的作用,以观察我们对行星形成过程的理解,并与之紧密相关,即通往可居住行星的途径和生命的出现。此外,主要观察结果将放大我们自己的银河系以及外部星系中星形形成过程的物理和化学。 FIR提供了独特的工具来研究加热,冷却和冲击的能量。这些示踪剂中的速度分辨数据将以空间分辨的方式揭示这些过程中介绍的详细动力学,并将通过基于地面的分子线数据提供完美的协同作用,以提供较冷的密集气体。

The far-infrared (FIR) regime is one of the few wavelength ranges where no astronomical data with sub-arcsecond spatial resolution exist. Neither of the medium-term satellite projects like SPICA, Millimetron nor O.S.T. will resolve this malady. For many research areas, however, information at high spatial and spectral resolution in the FIR, taken from atomic fine-structure lines, from highly excited carbon monoxide (CO), light hydrids, and especially from water lines would open the door for transformative science. A main theme will be to trace the role of water in proto-planetary disks, to observationally advance our understanding of the planet formation process and, intimately related to that, the pathways to habitable planets and the emergence of life. Furthermore, key observations will zoom into the physics and chemistry of the star-formation process in our own Galaxy, as well as in external galaxies. The FIR provides unique tools to investigate in particular the energetics of heating, cooling and shocks. The velocity-resolved data in these tracers will reveal the detailed dynamics engrained in these processes in a spatially resolved fashion, and will deliver the perfect synergy with ground-based molecular line data for the colder dense gas.

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