首页> 外文会议>IEEE International Conference on Plasma Science >Study of ELF/VLF wave generation by HF heater-modulated electrojet
【24h】

Study of ELF/VLF wave generation by HF heater-modulated electrojet

机译:HF加热器调制电射精电射精电射精的elf / VLF波的研究

获取原文

摘要

Summary form only given. The generation of ELF/VLF waves by the modulation of the electrojet by a powerful HF heater is of current interest. It is done by applying an amplitude modulated HF heater to modify the electron temperature of the electrojet in time. This in turn causes the modulation of the conductivity and thus, the electrojet current. Emissions are then produced at the modulation frequency and its harmonics. The present work extends the work of Kuo and Lee (1993) and Kuo (1993) of thermal instability to the nonlinear saturation regime. Two heater-modulation schemes are considered. One, corresponding to the one adopted in the Tromsq heating experiments (Stabbe et al., 1981), modulated the heater by a rectangular periodic pulse. The other one needs two overlapping heater waves (beat wave) having a frequency difference equal to sinusoidal amplitude modulation and is the approach adopted in the Arecibo heating experiments. The nonlinear evolutions of the generated ELF/VLF waves are determined numerically. Their spectra are also evaluated. The results show that the signal quality of the beat wave scheme is better. The field intensity of the emission at the fundamental modulation frequency is found to increase with the modulation frequency, consistent with the Tromsq results.
机译:摘要表格仅给出。通过强大的HF加热器调制电气喷射器的ELF / VLF波的产生是目前的兴趣。通过施加幅度调制的HF加热器来改变电气喷射的电子温度。这反过来导致电导率的调制,从而导致电射流电流。然后在调制频率及其谐波中产生排放。本工作扩展了Kuo和Lee(1993)和Kuo(1993)对非线性饱和制度的热不稳定性的工作。考虑两个加热器调制方案。一个,对应于TROMSQ加热实验中采用的那个(Stabbe等,1981),通过矩形周期性脉冲调制加热器。另一个需要具有等于正弦幅度调制的频率差的两个重叠加热器波(拍波),并且是在Arecibo加热实验中采用的方法。产生的ELF / VLF波的非线性演进在数字上确定。它们的光谱也被评估。结果表明,节拍波方案的信号质量更好。发现基本调制频率发射的励磁强度随着调制频率而增加,与TROMSQ结果一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号