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各向异性等离子体中撕裂模不稳定性和磁场重联的数值研究 被引量:2
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作者 马颖娟 王水 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2001年第4期437-445,共9页
应用二维三分量时变可压缩磁流体动力学模拟方法 ,数值研究了各向异性等离子体 (P⊥ ≠P∥ ,T⊥ ≠T∥)中的撕裂模不稳定性和磁场重联过程 .计算结果表明 ,在短暂的线性增长之后 ,不稳定性将趋于非线性饱和 .线性增长率随着各向异性程度... 应用二维三分量时变可压缩磁流体动力学模拟方法 ,数值研究了各向异性等离子体 (P⊥ ≠P∥ ,T⊥ ≠T∥)中的撕裂模不稳定性和磁场重联过程 .计算结果表明 ,在短暂的线性增长之后 ,不稳定性将趋于非线性饱和 .线性增长率随着各向异性程度 |P⊥/P∥|增强而增大 ,随着等离子体 β值减小及磁场y分量By 增大而降低 .在强垂直各向异性 (P⊥ >P∥)的情况下 ,电流片中磁场重联形成的磁岛达到非线性饱和后 ,在X型点附近形成空腔结构 ;随着空腔的增大 ,磁岛逐渐变小 ,并最终消失 .在P⊥ >P∥ 情况下 ,仅在电流片中心区域可以激发火蛇管不稳定性 。 展开更多
关键词 各向异性 撕裂 磁镜模 磁场重联 等离子体 数值
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Electron dynamics and wave activities associated with mirror mode structures in the near-Earth magnetotail 被引量:2
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作者 LI HuiMin ZHOU Meng +2 位作者 DENG XiaoHua YUAN ZhiGang HUANG ShiYong 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第8期1541-1551,共11页
We report the observation of mirror mode structures by Cluster spacecraft at around X^-16 RE in the Earth’s magnetotail.The wavelength of the mirror structure is larger than 7000 km,corresponding to tens of ion gyror... We report the observation of mirror mode structures by Cluster spacecraft at around X^-16 RE in the Earth’s magnetotail.The wavelength of the mirror structure is larger than 7000 km,corresponding to tens of ion gyroradii.Features of the mirror structures are similar to those detected in the magnetosheath:the anti-correlation between the magnetic field strength and plasma density,zero phase velocity in the plasma rest frame and linear polarization.The structures were observed in a region bounded by two dipolarizations during a substorm intensification.Thus,the dipolarization process may provide a plasma condition facilitating the growth of the mirror mode structures.Another interesting feature is the electron dynamics within the mirror structures.Thermal electron energy flux has an enhancement at 0°and 180°pitch angles inside the magnetic dips of the first three mirror structures and an enhancement at 90°pitch angle inside the magnetic dip of the last structure.The different electron distribution inside the mirror structures might be a result of different evolution stages of the mirror wave.The last structure may be in the nonlinear stage of the mirror instability,whereas the three others with quasi-sinusoidal waveforms may be in the linear stage.In addition,we found that intense whistler waves were confined within the magnetic dips.We conjecture that whistler waves observed in the first three dips were generated in a remote region,then they were trapped in the mirror mode troughs and transported toward the spacecraft;while the whistler wave detected in the last dip was excited locally by the electron anisotropy instability. 展开更多
关键词 mirror mode structure DIPOLARIZATION electron distribution whistler wave
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