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首页> 外文期刊>Geomagnetism and aeronomy >Results of Russian experiments dealing with the impact of powerful HF radiowaves on the high-latitude ionosphere using the EISCAT facilities
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Results of Russian experiments dealing with the impact of powerful HF radiowaves on the high-latitude ionosphere using the EISCAT facilities

机译:使用EISCAT设施处理强大的HF无线电波对高纬度电离层的影响的俄罗斯实验结果

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摘要

We present the results of complex experiments dealing with the impact of powerful HF radiowaves on the high-latitude ionosphere using the European Incoherent Scatter Scientific Association (EISCAT) facilities. During the ionospheric F-region heating by powerful extraordinary (X-mode) polarized HF radiowaves under the conditions of heating near the critical f H frequency f _H ≈ f _xF2 of the extraordinary wave of the F2-layer, we were first to detect the excitation of intense artificial small-scale ionospheric irregularities (ASIs), accompanied by electron temperature increases by approximately 50%. The results of coordinated satellite and ground-based observations of the powerful HF radiowave impact on the high-latitude ionosphere are considered. During ionospheric F-region heating by powerful HF radiowaves of ordinary polarization (O-mode) during evening hours, the phenomenon of ion outflow accompanied by electron temperature increases and thermal plasma expansion was revealed. Concurrent DMSP-F15 satellite measurements at a height of about 850 km indicate an O ~+ ion density increase. The CHAMP satellite observations identified ULF emissions at the modulation frequency (3 Hz) of the powerful HF radiowave, generated during modulated emissions of the powerful HF radiowave of O-polarization and accompanied by a substantial increase in the electron temperature and ASI generation.
机译:我们介绍使用欧洲非相干散射科学协会(EISCAT)设施处理强大的HF无线电波对高纬度电离层的影响的复杂实验的结果。在电离层F区通过强大的非常规(X模式)极化HF无线电波在F2层非常规波的临界f H频率f _H≈f _xF2附近加热的条件下加热时,我们首先检测到激发强烈的人工小尺度电离层不规则(ASI),伴随着电子温度升高约50%。考虑了对强大的HF无线电波对高纬度电离层的影响进行卫星和地面协调观测的结果。在傍晚时分,用普通极化(O型)强大的HF无线电波加热电离层F区时,发现离子流出现象伴随着电子温度升高和热等离子体膨胀。在约850 km的高度上同时进行DMSP-F15卫星测量表明,O〜+离子密度增加。 CHAMP卫星观测确定了在强大的HF无线电波的调制频率(3 Hz)处发生的ULF发射,这是在O极化强大的HF无线电波的调制发射过程中产生的,并且伴随着电子温度和ASI产生的大幅增加。

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