首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Electrostatic decay of Langmuir/z-mode waves in type III solar radio bursts
【24h】

Electrostatic decay of Langmuir/z-mode waves in type III solar radio bursts

机译:朗缪尔/或者波的静电衰变类型III太阳射电爆发

获取原文
获取原文并翻译 | 示例
           

摘要

About 40% of the waveforms observed by STEREO during type III solar radio bursts exhibits Langmuir beating and have split spectral peaks, suggestive of decay into product Langmuir and ion-acoustic waves. For lower electron beam speeds v_b/c?0.1, the spectra of Langmuir events with split spectral peaks are shown to be consistent with electrostatic (ES) decay into Langmuir-like waves with frequencies above the electron plasma frequency. For faster beam speeds vb/ca‰3;0.1, the spectra are consistent with one or more successive generations of ES decay and an end state of low wave number Langmuir/z-mode waves with strong electric fields perpendicular to the magnetic field. For many of the split spectral-peak events, an intense low-frequency response occurs that is consistent with ion-acoustic waves produced by ES decay, providing further evidence that these events are ES decay. An observed event is shown to be consistent with three successive backscatter decays, but such events are very rare in type III bursts. About 90% of the split spectral-peak events occur when T_i/T_e?0.6. Similarly, over 80% of the split peak events have energy densities above the theoretical nonlinear threshold for ES decay (for reasonable Langmuir damping rates ?10 ~(-3)ω_p). All events have beam speeds and energy densities below the maxima appropriate for ES decay of beam-driven Langmuir waves.
机译:大约40%的波形观察到立体音响类型III太阳射电爆发期间展品朗缪尔击败分裂谱峰,暗示的朗缪尔和衰变为产品离子声波波。速度v_b / c ? 0.1,朗缪尔事件的光谱显示与谱峰分裂与静电(ES)衰变为一致与频率高于Langmuir-like波电子等离子体频率。vb / ca 3‰;0.1,光谱是一致的和一个或多个连续的一代又一代的ES衰变低波数朗缪尔/或者状态结束波,并有很强的电场垂直磁场。谱峰的事件,一个强烈的低频反应发生,是一致的ES衰变,产生的离子声波的波提供进一步的证据表明,这些事件ES衰变。符合三个连续的后向散射衰变,但这样的事件是非常罕见的III型爆发。0.6事件发生时T_i / T_e吗?。分裂事件峰值能量的80%密度高于理论的非线性阈值ES衰变(合理的朗缪尔阻尼率? 10 ~(3)ω_p)。速度和能量密度低于最大值适合的ES衰变beam-driven朗缪尔波。

著录项

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