紧的惯性传感器用于测量物理实验的外部干扰
Jonathan J Carter1,2, Pascal Birckigt3, Oliver Gerberding4
1Max Planck Institute for Gravitational Physics (Albert Einstein Institute), Callinstr. 38, Hannover, Germany. jonathan.carter@aei.mpg.de.
Scientific reports
|August 1, 2024
概括
我们开发了一个紧的惯性传感器用于物理实验,提供卓越的地震隔离. 它的新设计实现了低噪音底部,在关键频率范围内超过现有传感器.
科学领域:
- 物理 物理学 物理
- 实验物理实验物理学
- 传感器技术 传感器技术
背景情况:
- 现代物理学实验需要高精度的惯性传感器来减轻地震运动干扰.
- 现有的惯性传感器往往缺乏先进应用所需的紧性和灵敏度.
研究的目的:
- 为了呈现一个新的,紧的惯性传感器与机械振荡器安装在一英寸光学.
- 为了实现适合编码惯性运动的低位移噪声底部.
主要方法:
- 设计了一种具有高质量因子 (600,000) 和共振频率 (50 Hz) 的机械振荡器.
- 集成了一个光学共振器读出方案,实现100 fm/Hz的位移噪声高于0.2 Hz.
- 使用集群测试验证了传感器性能.
主要成果:
- 传感器显示悬挂的热噪声基数低于商业替代品.
- 20Hz以下的性能可与领先的惯性传感器相美,其足迹要小得多.
- 在20Hz以上,传感器显示自噪底值为0.1 ng/Hz,为其类中报告的最佳水平.
结论:
- 紧,高性能惯性传感器非常适合在敏感实验中进行地震隔离.
- 它的真空兼容性和小尺寸有助于将其集成到诸如引力波探测器等系统中.
- 这种传感器提升了物理研究中精确运动控制的能力.
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