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The Fourier-Kelvin Stellar Interferometer (FKSI) Nulling Testbed II: Closed-loop Path Length Metrology And Control Subsystem

机译:傅里叶-凯尔文恒星干涉仪(FKSI)调零测试台II:闭环路径长度计量和控制子系统

摘要

The Fourier-Kelvin Stellar Interferometer (FKSI) is a mission concept for an imaging and nulling interferometer in the near to mid-infrared spectral region (3-8 microns), and will be a scientific and technological pathfinder for upcoming missions including TPF-I/DARWIN, SPECS, and SPIRIT. At NASA's Goddard Space Flight Center, we have constructed a symmetric Mach-Zehnder nulling testbed to demonstrate techniques and algorithms that can be used to establish and maintain the 10(exp 4) null depth that will be required for such a mission. Among the challenges inherent in such a system is the ability to acquire and track the null fringe to the desired depth for timescales on the order of hours in a laboratory environment. In addition, it is desirable to achieve this stability without using conventional dithering techniques. We describe recent testbed metrology and control system developments necessary to achieve these goals and present our preliminary results.
机译:傅里叶-开尔文恒星干涉仪(FKSI)是近红外至中红外光谱区域(3-8微米)的成像和调零干涉仪的任务概念,它将成为包括TPF-I在内的即将进行的任务的科学技术探路者/ DARWIN,SPECS和SPIRIT。在NASA的戈达德太空飞行中心,我们构建了一个对称的Mach-Zehnder零位试验台,以演示可用于建立和维持该任务所需的10(exp 4)零位深度的技术和算法。在这样的系统中固有的挑战之一是对于实验室环境中的小时量级的时标,获取和跟踪零条纹到期望深度的能力。另外,期望在不使用常规抖动技术的情况下实现该稳定性。我们描述了实现这些目标所必需的最新测试台计量学和控制系统的发展,并介绍了我们的初步结果。

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