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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Multiprobe estimation of field line curvature radius in the equatorial magnetosphere and the use of proton precipitations in magnetosphere-ionosphere mapping
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Multiprobe estimation of field line curvature radius in the equatorial magnetosphere and the use of proton precipitations in magnetosphere-ionosphere mapping

机译:多功能探针场估计线曲率在赤道磁气圈和半径使用过质子降雨magnetosphere-ionosphere映射

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[1] Nonadiabatic, chaotic motion of ions under a curved geomagnetic field geometry is well recognized as a key mechanism that leads to the pitch angle scattering of protons in the equatorial magnetosphere. The efficiency of such proton pitch angle scattering process is energy dependent and controlled by the radius of curvature of the magnetic field line (RCMFL). The protons scattered into the loss cone will precipitate into the ionosphere and excite proton auroras there. In this study, we propose techniques to calculate the RCMFL based upon multiprobe measurements under different probe geometries. We also demonstrate how to use the obtained RCMFL to evaluate the proton precipitation fluxes, and further use the proton precipitation features to help estimate the magnetosphereionosphere mapping. Our procedures are summarized as follows: (1) We calculate the RCMFL using Time History of Events and Macroscale Interactions during Substorms (THEMIS) multiprobe measurements. (2) With the obtained RCMFL, we evaluate the scattering efficiency and in turn the loss cone fluxes of the magnetospheric protons at different energy levels. (3) The above evaluation of the in situ loss cone fluxes is compared to the ionospheric measurements of proton precipitation fluxes in various energy ranges and/ or the optical proton auroras to estimate the possible footprint of THEMIS probes in the ionosphere.
机译:[1]非绝热的,混沌运动下的离子地磁场弯曲几何是好被认为是一个关键机制,导致了螺旋角散射的质子赤道磁场。质子能量螺旋角散射过程依赖的半径和控制磁场线的曲率(RCMFL)。质子散射损失锥将沉淀到电离层和质子激发极光。技术来计算RCMFL基于多功能探针测量在不同的调查几何图形。获得RCMFL评价质子降水通量,进一步使用质子降水特征来估计magnetosphereionosphere映射。总结如下:(1)我们计算吗RCMFL使用时间的历史事件和宏观尺度在亚暴(裁判)多功能探针的交互测量。评估散射效率,反过来地球的损失锥通量在不同的能级质子。评估现场损失锥通量相比电离层的测量质子降水各能量通量范围和/或光学质子极光忒弥斯估计可能的足迹调查在电离层。

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