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Low Frequency - High Sensitive Tunable Mechanical Monolithic Horizontal Sensors

机译:低频-高灵敏度可调机械整体式水平传感器

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This paper describes an optimized version of the mechanical version of the monolithic tunable folded pendulum, developed at the University of Salerno, configurable both as seismometer and, in a force-feedback configuration, as accelerometer. Typical application of the sensors are in the field of geophysics, including the study of seismic and newtonian noise for characterization of suitable sites for underground interferometer for gravitational waves detection. The sensor, shaped with precision machining and electric-discharge-machining, like the previous version, is a very compact instrument, very sensitive in the low-frequency seismic noise band, with a very good immunity to environmental noises. Important characteristics are the tunability of the resonance frequency and the integrated laser optical readout, consisting of an optical lever and an interferometer. The theoretical sensitivity curves, largely improved due to a new design of the pendulum arms and of the electronics, are in a very good agreement with the measurements. The very large measurement band (10~(-6) ± 10 Hz) is couple to a very good sensitivity (10~(-12 )m/Hz~(1/2) in the band 0.1 ± 10 Hz), as seismometer. Prototypes of monolithic seismometers are already operational in selected sites around the world both to acquire seismic data for scientific analysis of seismic noise and to collect all the useful information to understand their performances in the very low frequency band (f < 1mHz). The results of the monolithic sensor as accelerometer (force feed-back configuration) are also presented and discussed. Particular relevance has their sensitivity that is better than 10~(-11) m/s~2 /Hz~(1/2) in the band 0.1 ± 10 Hz. Finally, hypotheses are made on further developments and improvements of monolithic sensors.
机译:本文描述了萨勒诺大学开发的单片可调折叠摆的机械版本的优化版本,既可以配置为地震仪,也可以配置为力反馈配置为加速度计。传感器的典型应用是在地球物理领域,包括对地震和牛顿噪声的研究,以表征地下干涉仪用于重力波检测的合适位置。与以前的版本一样,该传感器采用精密加工和放电加工的形状,是一种非常紧凑的仪器,在低频地震噪声带中非常敏感,并且对环境噪声具有很好的免疫力。重要的特性是谐振频率的可调性和集成的激光光学读数,该光学读数由一个光杠杆和一个干涉仪组成。理论灵敏度曲线由于摆臂和电子装置的新设计而大大改善,与测量值非常吻合。很大的测量频带(10〜(-6)±10 Hz)与非常好的灵敏度(0.1±10 Hz频带中的10〜(-12)m / Hz〜(1/2))相耦合。整体式地震仪的原型已经在世界各地的特定地点投入使用,既可以获取地震数据以进行地震噪声的科学分析,又可以收集所有有用的信息以了解其在非常低的频段(f <1mHz)的性能。还介绍并讨论了作为加速度计(力反馈配置)的单片传感器的结果。特别相关的灵敏度在0.1±10 Hz频段内优于10〜(-11)m / s〜2 / Hz〜(1/2)。最后,对单片传感器的进一步发展和改进做出了假设。

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