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首页> 外文期刊>Annals Of Geophysics >First deep underground observation of rotational signals from an earthquake at teleseismic distance using a large ring laser gyroscope
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First deep underground observation of rotational signals from an earthquake at teleseismic distance using a large ring laser gyroscope

机译:使用大环形激光陀螺仪首次深层地下观测地震远距离地震的旋转信号

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摘要

Recent advances in large ring laser gyroscopes (RLG) technologies opened the possibility to observe rotations of the ground with sensitivities up to 10?11 rad/sec over the frequency band of seismological interest (0.01-1Hz), thus opening the way to a new geophysical discipline, i.e. rotational seismology. A measure of rotations in seismology is of fundamental interest for (a) the determination of all the six degrees of freedom that characterize a rigid body’s motion, and (b) the quantitative estimate of the rotational motions contaminating ground translation measurements obtained from standard seismometers. Within this framework, this paper presents and describes GINGERino, a new large observatory-class RLG located in Gran Sasso underground laboratory (LNGS), one national laboratories of the INFN (Istituto Nazionale di Fisica Nucleare). We also report unprecedented observations and analyses of the roto-translational signals from a tele-seismic event observed in such a deep underground environment.
机译:大环形激光陀螺仪(RLG)技术的最新进展为在地震学关注的频段(0.01-1Hz)上以高达10?11 rad / sec的灵敏度观察地面旋转提供了可能性。地球物理学科,即旋转地震学。地震学中的旋转测量对于(a)确定代表刚体运动的所有六个自由度,以及(b)旋转运动的定量估计至关重要,这些旋转运动会污染从标准地震仪获得的地面平移测量值。在此框架内,本文介绍并描述了GINGERino,这是一个新的大型天文台级RLG,位于INFIN国家实验室之一的Gran Sasso地下实验室(LNGS)中。我们还报告了在如此深的地下环境中观察到的来自远程地震事件的旋转平移信号的空前观察和分析。

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