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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Slot region electron loss timescales due to plasmaspheric hiss and lightning-generated whistlers
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Slot region electron loss timescales due to plasmaspheric hiss and lightning-generated whistlers

机译:时间由于槽区域电子损失plasmaspheric嘶嘶声和lightning-generated惠斯勒

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Energetic electrons (E > 100 keV) in the Earth's radiation belts undergo Doppler-shifted cyclotron resonant interactions with a variety of whistler mode waves leading to pitch angle scattering and subsequent loss to the atmosphere. In this study we assess the relative importance of plasmaspheric hiss and lightning-generated whistlers in the slot region and beyond. Electron loss timescales are determined using the Pitch Angle and energy Diffusion of Ions and Electrons (PADIE) code with global models of the spectral distributions of the wave power based on CRRES observations. Our results show that plasmaspheric hiss propagating at small and intermediate wave normal angles is a significant scattering agent in the slot region and beyond. In contrast, plasmaspheric hiss propagating at large wave normal angles and lightning-generated whistlers do not contribute significantly to radiation belt loss. The loss timescale of 2 MeV electrons due to plasmaspheric hiss propagating at small and intermediate wave normal angles in the center of the slot region (L = 2.5) lies in the range 1–10 days, consistent with recent Solar Anomalous and Magnetospheric Particle Explorer (SAMPEX) observations. Wave turbulence in space, which is responsible for the generation plasmaspheric hiss, thus leads to the formation of the slot region. During active periods, losses due to plasmaspheric hiss may occur on a timescale of 1 day or less for a wide range of energies, 200 keV < E < 1 MeV, in the region 3.5 < L < 4.0. Plasmaspheric hiss may thus also be a significant loss process in the inner region of the outer radiation belt during magnetically disturbed periods.
机译:高能电子(E > 100 keV)在地球的回旋加速器辐射带接受因都卜勒频移共振相互作用与各种各样的惠斯勒波导致螺旋角散射和模式随后向大气中丢失。我们评估的相对重要性plasmaspheric嘶嘶声和lightning-generated惠斯勒在槽及其它地区。损失时间尺度确定使用角度和能量扩散的离子和电子(PADIE)与全球的光谱模型代码根据退休研究中心分布的波浪发电观察。嘶嘶声在小型和中波传播正常的角是一个重大的散射剂槽地区。plasmaspheric嘶嘶声传播波正常的角度和lightning-generated啸叫声无显著影响辐射带吗的损失。在小而plasmaspheric嘘传播中波正常角的中心槽区域(L = 2.5)在于范围1 - 10天,与最近的太阳能异常和一致磁层粒子Explorer (SAMPEX)观察。负责代plasmaspheric嘘,从而导致槽的形成地区。plasmaspheric嘶嘶声的时间尺度上可能出现1一天或更少的各种能量,200 keV< E < 1兆电子伏,3.5 L < < 4.0。因此,Plasmaspheric嘶嘶声可能也是一个重要的损失过程的内部区域外在磁干扰辐射带期。

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