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A Michelson interferometer for seismic wave measurement: theoretical analysis and system performances

机译:用于地震波测量的迈克尔逊干涉仪:理论分析和系统性能

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This papers describes a new low-frequency seismic sensor for geophysical applications. The instrument is basically a monolithic tunable folded pendulum with an interferometric readout system, that can be configured as seismometer or as accelerometer. The monolithic mechanical design and the introduction of a laser interferometric technique for the readout implementation make it a very sensitive and compact instrument with a very good immunity to environmental noises. Preliminary tests on the mechanical performances of the monolithic structure and on the optical reaodut have been performed. Interesting result is the measured resonant frequency of the instrument of ≈ 150 mHz obtained with a rough tuning, demonstrating the feasibility of a resonant frequency of the order of 5 mHz with a more refined tuning. The mechanics of the seismic sensor, the optical scheme of the readout system, the theoretical predictions and the preliminary experimental performances as seismometer are discussed in detail, together with the foreseen further improvements.
机译:本文介绍了一种用于地球物理应用的新型低频地震传感器。该仪器基本上是带有干涉式读出系统的整体式可调折叠摆,可以配置为地震仪或加速度计。整体式机械设计以及为实现读取而引入的激光干涉技术使其成为一种非常灵敏且紧凑的仪器,对环境噪声具有很好的抵抗力。对整体结构的机械性能和光学反射器进行了初步测试。有趣的结果是通过粗调获得的约150 mHz的仪器测量谐振频率,证明了通过更精细的调谐获得5 mHz数量级谐振频率的可行性。详细讨论了地震传感器的力学原理,读出系统的光学方案,理论预测以及作为地震仪的初步实验性能,并预见了进一步的改进。

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