Low Frequency Tilt Seismology with a Precision Ground Rotation Sensor

Michael Ross, K. Venkateswara, C. Hagedorn, J. Gundlach, J. Kissel, J. Warner, H. Radkins, T. Shaffer, M. Coughlin, P. Bodin
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引用次数: 11

Abstract

We describe measurements of the rotational component of teleseismic surface waves using an inertial high-precision ground-rotation-sensor installed at the LIGO Hanford Observatory (LHO). The sensor has a noise floor of 0.4 nrad$/ \sqrt{\rm Hz}$ at 50 mHz and a translational coupling of less than 1 $\mu$rad/m enabling translation-free measurement of small rotations. We present observations of the rotational motion from Rayleigh waves of six teleseismic events from varied locations and with magnitudes ranging from M6.7 to M7.9. These events were used to estimate phase dispersion curves which shows agreement with a similar analysis done with an array of three STS-2 seismometers also located at LHO.
使用精密地面旋转传感器的低频倾斜地震学
我们描述了使用安装在LIGO汉福德天文台(LHO)的惯性高精度地面旋转传感器对远震表面波旋转分量的测量。该传感器在50 mHz时的本底噪声为0.4 nrad $/ \sqrt{\rm Hz}$,平移耦合小于1 $\mu$ rad/m,可实现小旋转的无平移测量。本文介绍了6次震级从6.7到7.9级的远震事件的瑞利波旋转运动的观测结果。这些事件被用来估计相位色散曲线,这与同样位于LHO的三个STS-2地震仪阵列所做的类似分析一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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