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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The proton temperature anisotropy associated with bursty bulk flows in the magnetotail
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The proton temperature anisotropy associated with bursty bulk flows in the magnetotail

机译:质子温度各向异性有关丛发性散装流磁尾

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[1] We study the development of the proton temperature anisotropy T⊥/T‖ in bursty bulk flows (BBFs), as observed by THEMIS Mission. For a set of 10 selected events, during which at least three spacecraft are aligned in the same flow, we can sample the plasma parameters along the Earth’s magnetotail. The temperature anisotropy in the quiescent tail is negligible. However, as soon as the BBF passes over the spacecraft a strong anisotropy is measured. We analyze T⊥/T‖ as a function of parallel plasma beta-β‖(=nkT‖/(B~2/2μ_0)) for the different THEMIS satellites and compare the spread of the data points with various instability thresholds over ion scales that can reduce the temperature anisotropy: for T⊥/T‖1 the proton cyclotron and mirror mode. It is shown that the anisotropy reduces whilst the BBF is moving Earthward, and the strongest fluctuations are enhanced along the instability thresholds, indicating that these instabilities reduce the proton temperature anisotropy.
机译:[1]研究了质子的发展温度各向异性⊥T / T为丛发性散装流忒弥斯(bbf),观察到的使命。至少10个选定的事件,在此期间,三个航天器在相同流保持一致,我们样本的等离子体参数吗地球磁尾。在静止的尾巴可以忽略不计。一旦BBF通过宇宙飞船强烈的各向异性测量。的函数并行等离子体β,β为(= nkT为/ (B ~ 2/2μ_0))的不同忒弥斯卫星和比较的传播数据点与各种不稳定性阈值离子尺度,可以降低温度各向异性:T⊥/ T为< 1并行和斜消防带;镜像模式。减少同时BBF正在向地球最强大的波动是增强沿不稳定性的阈值,表明这些温度不稳定降低质子各向异性。

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