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首页> 外文期刊>The Astrophysical Journal. Letters >Electron Scattering by High-frequency Whistler Waves at Earth's Bow Shock
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Electron Scattering by High-frequency Whistler Waves at Earth's Bow Shock

机译:通过高频吹口机在地球弓震动的电子散射

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Electrons are accelerated to non-thermal energies at shocks in space and astrophysical environments. While different mechanisms of electron acceleration have been proposed, it remains unclear how non-thermal electrons are produced out of the thermal plasma pool. Here, we report in situ evidence of pitch-angle scattering of nonthermal electrons by whistler waves at Earth's bow shock. On 2015 November 4, the Magnetospheric Multiscale (MMS) mission crossed the bow shock with an Alfvn Mach number similar to 11 and a shock angle similar to 84 degrees. In the ramp and overshoot regions, MMS revealed bursty enhancements of non-thermal (0.5-2 keV) electron flux, correlated with high-frequency (0.2-0.4 Omega(ce), where Omega(ce) is the cyclotron frequency) parallel-propagating whistler waves. The electron velocity distribution (measured at 30 ms cadence) showed an enhanced gradient of phase-space density at and around the region where the electron velocity component parallel to the magnetic field matched the resonant energy inferred from the wave frequency range. The flux of 0.5 keV electrons (measured at 1 ms cadence) showed fluctuations with the same frequency. These features indicate that non-thermal electrons were pitch-angle scattered by cyclotron resonance with the high-frequency whistler waves. However, the precise role of the pitch-angle scattering by the higher-frequency whistler waves and possible nonlinear effects in the electron acceleration process remains unclear.
机译:电子在太空和天体物理环境中受到冲击时被加速为非热能。虽然人们提出了不同的电子加速机制,但尚不清楚热等离子体池是如何产生非热电子的。在这里,我们报告了地球弓形激波中哨声波对非热电子俯仰角散射的现场证据。2015年11月4日,磁层多尺度(MMS)任务以类似于11的阿尔夫纳马赫数和类似于84度的冲击角穿越了弓激波。在斜坡和超调区域,MMS显示非热(0.5-2 keV)电子通量的突发性增强,与高频(0.2-0.4ω(ce),其中ω(ce)是回旋加速器频率)平行传播的哨声波相关。电子速度分布(以30 ms的频率测量)显示,在平行于磁场的电子速度分量与从波频率范围推断的共振能量匹配的区域及其周围,相空间密度梯度增强。0.5keV电子的通量(以1ms的频率测量)显示出相同频率的波动。这些特征表明,非热电子是由高频哨声波的回旋共振散射的俯仰角。然而,高频哨声波的俯仰角散射和电子加速过程中可能的非线性效应的确切作用尚不清楚。

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