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ASTROPHYSICAL IMAGING WITH THE DARWIN IR INTERFEROMETER

机译:达尔文红外干涉仪的天体成像

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摘要

The proposed infrared space interferometry mission Darwin has two main aims: (ⅰ) to detect and characterize exo-planets similar to the Earth, and (ⅱ) to carry out astrophysical imaging in the wavelength range 6-20 micron at a sensitivity similar to JWST, but at an angular resolution up to 100 times higher. In this contribution we will first briefly discuss the imaging performance of the Darwin mission. We will then discuss how Darwin will contribute in a very significant way to our understanding of the formation and evolution of planets, stars, galaxies, and super-massive black-holes located at the centers of galaxies.
机译:拟议的红外空间干涉测量任务达尔文有两个主要目标:(ⅰ)检测和表征类似于地球的系外行星,(ⅱ)以类似于JWST的灵敏度在6-20微米的波长范围内进行天体物理成像,但角分辨率最高可达100倍。在这项贡献中,我们将首先简要讨论达尔文任务的成像性能。然后,我们将讨论达尔文如何以非常重要的方式帮助我们理解位于星系中心的行星,恒星,星系和超大质量黑洞的形成和演化。

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