Variation in the D-region ionosphere after the 2015 Nepal earthquake using LF transmitter signals

Tekkan Akashi, H. Ohya, F. Tsuchiya, K. Nozaki, H. Nakata
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Abstract

. We report variation in the D-region ionosphere after the 2015 Nepal earthquake using low-frequency (LF) transmitter signals. The Nepal earthquake (Mw 7.8) occurred at 6:11:26 UT on April 25, 2015. In this study, we used the BPC (China, 68.5 kHz)-Takine (TKN, Japan) LF radio wave propagation path, which has a great circle distance between the epicenter and the LF propagation path of 3,025 km. The observed periods of variation in the LF amplitude and phase were 100-300 s. The observed variation in the LF amplitude and phase was approximately +/-0.1 dB and +/-1°, respectively. The vertical velocity of the ground oscillation near the midpoint of the LF propagation path had a similar period to the LF waves. The Rayleigh wave spread concentrically from the epicenter to the LF path, and then the acoustic waves propagated vertically at the midpoint of the LF path from the Earth’s surface to the D-region ionosphere height. The maximum coherences between the LF amplitude and vertical seismic velocity, and between the LF phase and vertical seismic velocity were 0.90 (period: 146 s) and 0.77 (256 s), respectively, which were both significant at the 95% confidence level. The variation in the LF amplitude and phase was caused by acoustic waves excited by the Rayleigh wave.
2015年尼泊尔地震后d区电离层的低频发射信号变化
。我们使用低频(LF)发射机信号报告了2015年尼泊尔地震后d区电离层的变化。尼泊尔7.8级地震发生在2015年4月25日世界时6:11:26。本研究采用BPC(中国,68.5 kHz)-Takine(日本,TKN)低频电波传播路径,该路径距离震中和低频电波传播路径有3025 km的大圆距。观察到的低频振幅和相位变化周期为100 ~ 300 s。观察到的低频振幅和相位变化分别约为+/-0.1 dB和+/-1°。在低频波传播路径中点附近的地面振荡垂直速度与低频波具有相似的周期。瑞利波从震中向低频路径同心传播,然后声波在低频路径中点从地表向d区电离层高度垂直传播。低频振幅与垂直地震速度、低频相位与垂直地震速度的最大相干度分别为0.90(周期为146 s)和0.77 (256 s),在95%置信水平上均具有显著性。低频振幅和相位的变化是由瑞利波激发的声波引起的。
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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