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Potential of space-based infrared Bracewell interferometers for planet detection

机译:天基红外Bracewell干涉仪在行星探测中的潜力

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摘要

The Darwin and TPF-I space missions will be able to study the atmosphere of distant worlds similar to the Earth. Flying these space-based interferometers will however be an extraordinary technological challenge and a first step could be taken by a smaller mission. Several proposals have already been made in this context, using the simplest nulling scheme composed of two collectors, i.e., the original Bracewell interferometer. Two of these projects, viz. Pegase and the Fourier-Kelvin Space Interferometer, show very good perspectives for the characterisation of hot extra-solar giant planets (i.e., Jupiter-size planets orbiting close to their parent star). In this paper, we build on these concepts and try to optimise a Bracewell interferometer for the detection of Earth-like planets. The major challenge is to efficiently subtract the emission of the exo-zodiacal cloud which cannot be suppressed by classical phase chopping techniques as in the case of multi-telescopes nulling interferometers. We investigate the potential performance of split-pupil configurations with phase chopping and of OPD modulation techniques, which are good candidates for such a mitigation. Finally, we give a general overview of the performance to be expected from space-based Bracewell interferometers for the detection of extra-solar planets. In particular, the prospects for known extra-solar planets are presented.
机译:达尔文和TPF-I太空任务将能够研究与地球类似的遥远世界的大气。然而,飞行这些天基干涉仪将是一项非凡的技术挑战,较小的任务可以迈出第一步。在这种情况下,已经使用由两个收集器组成的最简单的归零方案,即原始的Bracewell干涉仪,提出了一些建议。其中两个项目,即。钉销和傅里叶-开尔文空间干涉仪为表征高温太阳系超大型行星(即环绕其母恒星运转的木星大小的行星)的特性展示了非常好的视角。在本文中,我们以这些概念为基础,并尝试优化Bracewell干涉仪以检测类地行星。主要的挑战是如何有效地减少黄道带云的发射,这是经典的相位斩波技术无法抑制的,如多望远镜置零干涉仪的情况。我们研究了具有相位斩波和OPD调制技术的分离式瞳孔配置的潜在性能,它们是缓解此类问题的理想选择。最后,我们概述了太空Bracewell干涉仪在探测太阳系外行星方面的预期性能。特别是介绍了已知太阳系外行星的前景。

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