Demonstration of tilt sensing using a homodyne quadrature interferometric translational sensor

IF 3.6 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Koji Nagano, Karera Mori and Kiwamu Izumi
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引用次数: 0

Abstract

Future gravitational wave observation in space will demand improvement in the sensitivity of the local sensor for the drag-free control. This paper presents the proposal, design, and demonstration of a new laser interferometric sensor named Quadrature Interferometric Metrology of Translation and Tilt (QUIMETT) for the drag-free local sensor. QUIMETT enables simultaneous measurements of both translational displacement and tilts of a reflective object with a single interferometer package. QUIMETT offers a characteristic feature where the sensitivity to tilt is independent of the interference condition while maintaining the ability to measure the translational displacement for a range greater than the laser wavelength. The tilt-sensing function has been demonstrated in a prototype experiment. The tilt sensitivity remained unchanged in different interference conditions and stayed at 10 nrad Hz at 0.1 Hz.
演示倾斜传感使用一个纯差正交干涉平移传感器
未来的空间引力波观测需要提高局部传感器的灵敏度,实现无拖曳控制。本文提出了一种新型激光干涉传感器——正交干涉平移与倾斜测量(QUIMETT),用于无拖曳局部传感器的设计和演示。QUIMETT可以用一个干涉仪包同时测量反射物体的平移位移和倾斜。QUIMETT提供了一个特点,即对倾斜的灵敏度与干涉条件无关,同时保持了测量平移位移的能力,测量范围大于激光波长。倾斜感应功能已在原型实验中得到验证。在不同的干扰条件下,倾斜灵敏度保持不变,在0.1 Hz时保持在10 nrad Hz。
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来源期刊
Classical and Quantum Gravity
Classical and Quantum Gravity 物理-天文与天体物理
CiteScore
7.00
自引率
8.60%
发文量
301
审稿时长
2-4 weeks
期刊介绍: Classical and Quantum Gravity is an established journal for physicists, mathematicians and cosmologists in the fields of gravitation and the theory of spacetime. The journal is now the acknowledged world leader in classical relativity and all areas of quantum gravity.
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