Laboratory demonstration of an off-axis optical bench design for future gravity missions.

IF 1.3 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Review of Scientific Instruments Pub Date : 2024-09-01 DOI:10.1063/5.0215690
Bo Peng, Kailan Wu, Jingui Wu, Zhongkai Guo, Yun Wang, Ming Li, Yongchao Zheng, Xu Li, Chenhui Xia, Shaojun Bai, Yiqun Wang, Xuling Lin
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Abstract

The inter-satellite laser ranging interferometer is one of the core components of future gravity missions to achieve high ranging precision. This work builds a preliminary breadboard of the off-axis optical bench design, which integrates the merits of the off-axis optical bench design of GRACE Follow-On mission and other on-axis designs. The study finds that the displacement noise between two optical benches has been reduced to 20nm/Hz at a frequency of 10 mHz, and the differential wavefront sensing noise has been suppressed to 10-5rad/Hz at 1 kHz as well. In addition, the tilt-to-length coupling noise related to the piston effect is restricted within 30 μm/rad, and the relative parallelism error of the transmitting beam and receiving beam is less than 4.5%. The results show that this off-axis optical bench design is an important candidate for China's future gravity missions.

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用于未来重力飞行任务的离轴光学工作台设计的实验室演示。
卫星间激光测距干涉仪是未来重力飞行任务实现高测距精度的核心部件之一。这项工作综合了 GRACE Follow-On 任务的离轴光学台设计和其他轴上设计的优点,初步构建了离轴光学台设计的面包板。研究发现,在频率为 10 mHz 时,两个光学工作台之间的位移噪声已降至 20nm/Hz ;在频率为 1 kHz 时,差分波前感应噪声也已抑制至 10-5rad/Hz 。此外,与活塞效应有关的倾斜-长度耦合噪声被限制在 30 μm/rad 以内,发射光束和接收光束的相对平行度误差小于 4.5%。结果表明,这种离轴光学工作台设计是中国未来引力任务的重要候选方案。
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来源期刊
Review of Scientific Instruments
Review of Scientific Instruments 工程技术-物理:应用
CiteScore
3.00
自引率
12.50%
发文量
758
审稿时长
2.6 months
期刊介绍: Review of Scientific Instruments, is committed to the publication of advances in scientific instruments, apparatuses, and techniques. RSI seeks to meet the needs of engineers and scientists in physics, chemistry, and the life sciences.
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