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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Resonant scattering of outer zone relativistic electrons by multiband EMIC waves and resultant electron loss time scales
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Resonant scattering of outer zone relativistic electrons by multiband EMIC waves and resultant electron loss time scales

机译:共振散射外区相对论电子多波段位的海浪和合成电子损失时间尺度

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To improve our understanding of the role of electromagnetic ion cyclotron (EMIC) waves in radiation belt electron dynamics, we perform a comprehensive analysis of EMIC wave-induced resonant scattering of outer zone relativistic (>0.5MeV) electrons and resultant electron loss time scales with respect to EMIC wave band, L shell, and wave normal angle model. The results demonstrate that while H~+-band EMIC waves dominate the scattering losses of ~1–4 MeV outer zone relativistic electrons, it is He~+-band and O~+-band waves that prevail over the pitch angle diffusion of ultrarelativistic electrons at higher energies. Given the wave amplitude, EMIC waves at higher L shells tend to resonantly interact with a larger population of outer zone relativistic electrons and drive their pitch angle scatteringmore efficiently. Obliquity of EMIC waves can reduce the efficiency of wave-induced relativistic electron pitch angle scattering. Compared to the frequently adopted parallel or quasi-parallel model, use of the latitudinally varying wave normal angle model produces the largest decrease in H~+-band EMIC wave scattering rates at pitch angles ~5 MeV. At a representative nominal amplitude of 1 nT, EMIC wave scattering produces the equilibrium state (i.e., the lowest normal mode under which electrons at the same energy but different pitch angles decay exponentially on the same time scale) of outer belt relativistic electrons within several to tens of minutes and the following exponential decay extending to higher pitch angles on time scales from <1 min to ~1 h. The electron loss cone can be either empty as a result of the weak diffusion or heavily/fully filled due to approaching the strong diffusion limit, while the trapped electron population at high pitch angles close to 90° remains intact because of no resonant scattering. In this manner, EMIC wave scattering has the potential to deepen the anisotropic distribution of outer zone relativistic electrons by reshaping their pitch angle profiles to "top-hat." Overall, H~+-band and He~+-band EMIC waves are most efficient in producing the pitch angle scattering loss of relativistic electrons at ~1–2MeV. In contrast, the presence of O~+-band EMIC waves, while at a smaller occurrence rate, can dominate the scattering loss of 5–10MeV electrons in the entire region of the outer zone, which should be considered in future modeling of the outer zone relativistic electron dynamics.
机译:改善我们的理解的作用电磁离子回旋波(位的)辐射带电子动力学,我们执行位的海浪引发的全面分析共振散射外区相对论(> 0.5兆电子伏)电子和合成电子损失时间尺度对位的波段,L壳,波正常角模型。证明在H ~ +带位的波主导的散射损失~ 1 - 4兆电子伏外区相对论电子,这是他~ +乐队O ~ +带波,战胜螺距角ultrarelativistic电子的扩散更高的能量。波L壳往往共鸣地更高与一个更大的人口外区相对论电子和驱动他们的音高角scatteringmore效率。位的波可以降低效率海浪引发的相对论性电子螺旋角散射。平行或quasi-parallel模型,使用的纬度的不同波正常角模型产生最大的降低H ~ +带位的波散射利率螺距角 ~ 5兆电子伏。1元的振幅,位的波散射产生平衡态(即最低的正常模式下,电子在相同的能量指数在不同螺距角衰变相同的时间尺度)外腰带相对论电子在几到几十分钟以下指数衰减扩展更高的音调角度对时间尺度从< 1分钟~ 1 h。电子损失锥可以是空的由于疲软的扩散严重/完全由于接近强烈的扩散限制,而被困在高音调的角度接近电子人口因为没有共振90°仍然完好无损散射。有可能加深各向异性吗外区相对论电子的分布通过重塑他们的螺旋角的概要文件“上流社会的。”波是最高效的生产角散射损失的相对论性电子在~ 1-2MeV。位的波,而在一个较小的出现率,可以主导5-10MeV的散射损失吗电子在整个地区的外区,应该考虑在未来的建模外区相对论电子动力学。

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