系外行星探测过程的演示使用四束零干涉测量法

Stefan R. Martin, A. Booth, F. Loya
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引用次数: 0

摘要

研制了行星探测试验台,用于模拟和测试红外消零干涉仪对距离太阳系约15%的类地行星的探测过程。试验台结合了八束红外光,四束来自恒星,四束来自行星,模拟“x射线”望远镜航天器的形成。探测过程包括稳定地消除星光,旋转航天器编队,在几个小时内取平均值,并根据预测的系外行星特征对信号进行测试。该测试平台模拟了除宽带光操作外的所有检测过程,这是未来计划的升级。本文介绍了系外行星信号模拟、深星光零化和行星探测的最新结果和计划,恒星与行星的对比度为一百万比一。这些结果将证明在接近飞行的对比度下使用零干涉测量法探测系外行星的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Demonstration of the exoplanet detection process using four-beam nulling interferometry
The Planet Detection Testbed has been developed to simulate and test the detection process for an infrared nulling interferometer observing an earthlike planet orbiting a nearby star within about 15 pc of the solar system. The testbed combines eight beams of infrared light, four from the star and four from the planet, simulating an ‘Xa-rray’ telescope spacecraft formation. The detection process involves stable nulling of the starlight, rotation of the spacecraft formation, averaging over a few hours and testing of the signal against predicted exoplanet signatures. The testbed simulates all parts of the detection process except operation in broadband light, which is a planned upgrade for the future. This paper describes the latest results and plans for exoplanet signal simulation, deep starlight nulling and planet detection at star to planet contrast ratios of one million to one. These results are planned to demonstrate the feasibility of exoplanet detection using nulling interferometry at near-flightlike contrast ratios.
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