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Comparison between two theoretical mechanisms for the formation of the plasmapause and relevant observations

机译:血浆停顿形成的两种理论机制之间的比较及相关观察

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摘要

The plasmapause formation physical mechanisms are recalled: (i) the MHD convection mechanism, based on the original idea that the plasmapause coincides with the last closed equipotential (LCE) of the magnetospheric convection electric field or with the last closed streamline (LCS) of the equatorial plasma, and (ii) the interchange mechanism, which is based on peeling off the plasmasphere as a result of substorm associated enhancements of the night side convection velocity, leading to an enhanced centrifugal acceleration in the outermost layers of the plasmasphere. The plasmapause positions, predicted by these alternative theories, were numerically determined for two different magnetospheric empirical electric field models: (i) the Volland-Stern-Maynard-Chen (VSMC) and (ii) McIlwain E5D models, both of which are Kp-dependent. The predicted positions and overall shape of the equatorial plasmapause cross-sections are confronted to those derived from decades of whistler and satellite observations including the EUV observations during the substorm of June 27, 2001. It is found that the VSMC electric field model and the LCS plasmapause formation theory less correspond to whistler measurements and in-situ satellite observations than the E5D model and the interchange plasmapause formation mechanism.
机译:回忆起等离子体暂停形成的物理机制:(i)MHD对流机制,基于等离子体暂停与磁层对流电场的最后一个封闭等势线(LCE)或最后一个闭合流线(LCS)一致的原始思想。赤道等离子体;以及(ii)交换机制,其基础是由于亚暴引起的夜间对流速度的提高而剥落了等离子层,导致等离子层最外层的离心加速度增加。这些替代理论所预测的等离子体暂停位置是通过数值确定的,用于两个不同的磁层经验电场模型:(i)Volland-Stern-Maynard-Chen(VSMC)和(ii)McIlwain E5D模型,两者均为Kp-依赖。赤道等离子断面的预测位置和整体形状与2001年6月27日亚暴期间的数十年口哨和卫星观测(包括EUV观测)得出的结果相对。发现VSMC电场模型和LCS与E5D模型和互换血浆暂停形成机理相比,血浆暂停形成理论与惠斯勒测量和原位卫星观测的对应性较小。

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