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首页> 外文期刊>Radio Science >Generation of ELF and VLF waves by a thermal instability excited in the HF heater-modulated polar electrojet
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Generation of ELF and VLF waves by a thermal instability excited in the HF heater-modulated polar electrojet

机译:通过在HF加热器调制的极性电喷流中激发的热不稳定性产生ELF和VLF波

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摘要

A thermal instability responding to the modulation of polar electrojet by HF heater as a potential efficient mechanism for the generation of ELF and VLF waves has been investigated. It is shown that a positive feedback through the electron-neutral collisional heating process can cause the transient response of the plasma to the modulated HF heater to grow exponentially. Considering a sinusoidally modulated HF heater wave having its field amplitude proportional to |cosω1t/2|, the threshold fields of the thermal instability under normal electrojet conditions are found to be about 1.6 V m and 0.8 V m for the o mode and x mode operation respectively. For a heater wave field of 2 V m, the instability can be excited by the x mode heater within a few milliseconds and also by the o mode heater but taking about 9 times as long.
机译:已经研究了响应于HF加热器对极性电喷射的调制的热不稳定性,作为产生ELF和VLF波的潜在有效机制。结果表明,通过电子中性碰撞加热过程产生的正反馈会导致等离子体对已调制HF加热器的瞬态响应呈指数增长。考虑到场振幅与|cosω1t/ 2 |成正比的正弦调制HF加热器波,对于o模式和x模式操作,发现正常电喷条件下热不稳定性的阈值场约为1.6 V m和0.8 V m分别。对于2 V m的加热器波场,x模式加热器可以在几毫秒内激发不稳定性,o模式加热器也可以在几毫秒内激发不稳定性,但所需时间约为9倍。

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