使用DWS光学读数来提高扭矩的灵敏度
Shaoxin Wang1,2, Heshan Liu1,2, Lei Dai3
1Center for Gravitational Wave Experiment, National Microgravity Laboratory, Institute of Mechanics, Chinese Academy of Sciences (CAS), Beijing 100190, China.
Sensors (Basel, Switzerland)
|October 14, 2023
概括
这项研究开发了一种混合扭矩,用于太空引力波任务,具有差异波面传感. 改进后的系统实现了10nrad/Hz的角分辨率,提高了检测流浪力的灵敏度.
科学领域:
- 太空物理空间物理学
- 引力波检测引力波探测器
- 精确度测量测量的精确度
背景情况:
- 无拖动系统对于太空引力波检测至关重要,以保持测试质量的超低噪声环境.
- 地面验证对于评估对流浪力噪声的屏蔽和补偿能力至关重要.
研究的目的:
- 设计和分析一台用于地面验证无拖动系统的混合装置.
- 提出和测试一个微分波面传感 (DWS) 的光学读取技术,以提高扭矩的灵敏度.
主要方法:
- 设计和分析了一种混合装置,该装置结合了传统的扭矩和DWS光学读数.
- 读出分辨率的实验是在一个定制的光学基板上进行的.
主要成果:
- DWS光学读数在整个测量频段实现了10nrad/Hz的角分辨率.
- 与自动聚合器相比,扭动摆的灵敏度得到了显著提高.
- 预期的背景噪声水平为4.5 × 10-15 Nm/Hz1/2 在10mHz时被预测.
结论:
- 拟议的DWS技术为扭力摆形系统提供了更高的灵敏度.
- 这种方法适用于无拖动系统的地面验证和未来任务的潜在升级.
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