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Instrumental stability requirements for exoplanet detection with a nulling interferometer: variability noise as a central issue

机译:用零陷干涉仪进行系外行星探测的仪器稳定性要求:可变性噪声为中心问题

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We revisit the nulling interferometer performances that are needed for direct detection and the spectroscopic analysis of exoplanets, e.g., with the DARWIN [European Space Agency-SCI 12 (2000)] or TPF-I [JPL Publ. 05-5, (2005)] missions. Two types of requirement are found, one concerning the mean value of the instrumental nulling function and another regarding its stability. The stress is usually put on the former. It is stringent at short wavelengths but somewhat relaxed at longer wavelengths. The latter, which we call the variability noise condition, does not usually receive enough attention. It is required regardless of telescope size and stellar distance. The results from three nulling experiments performed in laboratories around the world are reported and compared with the requirements. All three exhibit 1/f noise that is incompatible with the performances required by the mission. As pointed out by Lay [Appl. Opt. 43, 6100-6123 (2004)], this stability problem is not fully solved by modulation techniques. Adequate solutions must be found that are likely to include servo systems using the stellar signal itself as a reference and internal metrology with high stability.
机译:我们重新审查了直接探测和系外行星光谱分析所需的调零干涉仪性能,例如,使用DARWIN [欧洲航天局SCI 12(2000)]或TPF-1 [JPL Publ。 05-5,(2005)]任务。找到了两种类型的需求,一种涉及工具清零函数的平均值,另一种涉及其稳定性。压力通常施加在前者上。它在短波长下很严格,但在较长波长下有些放松。后者,我们称为可变噪声条件,通常不会引起足够的重视。无论望远镜的大小和恒星距离如何,都需要使用它。报告了在世界各地的实验室进行的三个清零实验的结果,并将其与要求进行了比较。所有这三个都表现出1 / f噪声,与任务要求的性能不兼容。正如莱[Appl。选择。 43,6100-6123(2004)]中,这种稳定性问题无法通过调制技术完全解决。必须找到足够的解决方案,其中可能包括使用恒星信号本身作为参考的伺服系统以及具有高稳定性的内部度量衡。

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