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Lower-Band 'Monochromatic' Chorus Riser Subelement/Wave Packet Observations

机译:Lower-Band“单色”合唱立管子元素/波包的观察

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Three lower-band (f < 0.5 fce) chorus riser elements detected in the dayside generation region were studied in detail using the Van Allen Probe data. Two subelements/wave packets within each riser were examined for their wave "frequency" constancy within seven consecutive wave cycles. The seven wave cycles contained the maximum amplitudes of the subelements/packets. Maximum variance B1 zero crossings were used for the identification of wave cycle start and stop times. It is found that the frequency is constant to within ~3% (one standard deviation), with no evidence of upward frequency sweeping over the seven cycles. Continuous wavelet power spectra for the duration of the seven cycles confirm this conclusion. The implication is that a chorus riser element is composed of coherent approximately "monochromatic" steps instead of a gradual sweep in frequency over the whole element. There was no upward frequency stepping where the wave amplitude was the largest, contrary to the sideband theory prediction. It is shown that a chorus riser involves instability of cyclotron resonant energetic electrons from ~6 to ~40 keV at L = 5.8, that is, essentially the whole substorm electron energy spectrum. The above findings may have important consequences for possible wave generation mechanisms. Some new ideas for mechanisms are suggested in conclusion.
机译:三个lower-band (f < 0.5 fce)合唱立管元素中发现的光面的一代使用范艾伦详细区域进行了研究调查数据。每个波立管检查“频率”在7连续恒常性波周期。子元素的最大振幅/包。最大方差B1零交叉使用识别波周期的启动和停止次了。在~ 3%(一个标准偏差),没有向上扫频的证据七个周期。七个周期期间证实了这一点结论。立管组成的元素是一致的约而不是“单色”步骤逐步扫描频率在整个元素。波振幅是最大的,边带相反理论预测。表明,合唱立管涉及不稳定电子回旋共振能量从~ 6~ 40 L = 5.8 keV,本质上整个亚暴电子能谱。以上研究结果可能产生重要的后果可能的波生成机制。创意机制提出的结论。

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