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Ionospheric effects of earthquakes in Japan in March 2011 obtained from observations of lightning electromagnetic radio signals

机译:从闪电电磁无线电信号的观测获得的2011年3月日本地震的电离层效应

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Manifestations of disturbances in the lower ionosphere caused by a complex series of earthquakes (the strong earthquakes with M Combining double low line 7.3 and M Combining double low line 9 - known as M9 Tohoku EQ - and the subsequent aftershocks) that occurred near the Japanese island of Honshu have been considered with the use of monitoring measurements of the amplitude of lightning electromagnetic signals (atmospherics) received at Yakutsk. Some data of one-point lightning location systems have been compared with the data of the WWLLN network. The analysis of hourly values variation of the atmospheric amplitude passing over the earthquake epicenters shows that during the initial period (the strong earthquakes on 9 March and 11 March) a typical pattern of variations was observed. It was manifested in the increased amplitude after both earthquakes. There were also possible precursors in the form of the increase in amplitude 12-14 days before the events. Though the focuses of these earthquakes were very close to each other, the registration of both precursors may indicate that both of the lithospheric processes developed to a certain extent independently. During all the days of the atmospheric amplitude enhancement the quasi-periodic variation trains were recorded. Together with the delay of earthquake effects relative to the time of the events, they may testify in favor of transferring the energy of lithospheric processes into the lower ionosphere by means of atmospheric gravity waves.
机译:在日本岛附近发生的一系列复杂地震(M合并双低线7.3和M合并双低线9(称为M9 Tohoku EQ)以及随后的余震)引起的电离层下部扰动的表现通过对雅库茨克接收的雷电电磁信号(大气)的幅度进行监测测量,已考虑使用本州的“本州”卫星。将单点闪电定位系统的某些数据与WWLLN网络的数据进行了比较。对穿过地震震中的大气振幅的小时值变化进行的分析表明,在初始阶段(3月9日和3月11日的强烈地震),观察到了典型的变化模式。两次地震后振幅都增加了。在事件发生前12-14天,还有振幅增加形式的前兆。尽管这些地震的震源非常接近,但两种前兆的记录都可能表明这两个岩石圈过程都在一定程度上独立发展。在大气振幅增强的所有日子中,记录了准周期变化序列。加上地震影响相对于事件发生时间的延迟,它们可能证明有利于借助大气重力波将岩石圈过程的能量转移到较低的电离层中。

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