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亚暴偶极化中近地磁尾质子的非绝热加速 被引量:1
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作者 孟雪洁 曹晋滨 +1 位作者 王铁砚 马玉端 《空间科学学报》 CAS CSCD 北大核心 2014年第6期794-801,共8页
亚暴偶极化过程中离子加速是亚暴粒子注入的重要产生机制.通过试验粒子的方法模拟研究了亚暴偶极化期间磁尾等离子体片-8R_e^-5R_e处超低频电磁波对质子的加速过程.研究表明,质子在大尺度偶极化电磁场的作用下向内磁层注入,与质子回旋... 亚暴偶极化过程中离子加速是亚暴粒子注入的重要产生机制.通过试验粒子的方法模拟研究了亚暴偶极化期间磁尾等离子体片-8R_e^-5R_e处超低频电磁波对质子的加速过程.研究表明,质子在大尺度偶极化电磁场的作用下向内磁层注入,与质子回旋频率相近的超低频电磁波能够引起低能质子发生非绝热加速.质子在偶极化前后的能量变化与质子的初始能量密切相关,初始能量远小于截止能量的质子,末能量要比初始能量显著增加,其值与扰动波频率相关,且量级与偶极化造成的低能氧离子能量增加量级基本相当;初始能量在截止能量以上的质子受超低频电磁波影响不大,注入过程能量基本保持不变. 展开更多
关键词 亚暴 磁场偶极化 非绝热加速
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Nonadiabatic acceleration of plasma sheet ions related to ion cyclotron waves 被引量:3
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作者 WANG Zhi Qiang CAO Jin Bin +2 位作者 RME Henri DANDOURAS Iannis MA Yu Duan 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第12期2434-2440,共7页
The nonadiabatic acceleration of plasma sheet ions is important to the understanding of substorm energetic injections and the formation of ring current. Previous studies show that nonadiabatic acceleration of protons ... The nonadiabatic acceleration of plasma sheet ions is important to the understanding of substorm energetic injections and the formation of ring current. Previous studies show that nonadiabatic acceleration of protons by magnetic field dipolarization is hard to occur at X>–10 RE because the time-scale of dipolarization(several minutes) is much larger than the gyroperiod of protons there(several seconds). In this paper, we present a case of nonadiabatic acceleration of plasma sheet ions observed by Cluster on October 30, 2006 at(XGSM, YGSM)=(-7.7, 4.7) RE. The nonadiabatic acceleration of ions is caused not by previously reported magnetospheric dipolarization but by the ultra low frequency(ULF) waves during magnetospheric dipolarization. The nonadiabatic acceleration of ions generates a new energy flux structure of ions, which is characterized by the usual energy flux increase of ions(28–80 ke V) and a concurrent energy flux decrease of ions in a lower energy range(10 e V–20 ke V). These new observations constitute a complete physical picture: The lower energy ions absorb the wave energy, and thus get accelerated to higher energy. We use a nonadiabatic model to interpret the ion energy flux variations. Both analytic and simulation results are in good agreement with the observations. This indicates that the nonadiabatic acceleration associated with ULF waves superposed on dipolarized magnetic field is an effective mechanism for ion energization in the near-Earth plasma sheet. The presented energy flux structures can be used as a proxy to identify the similar dynamic process. 展开更多
关键词 nonadiabatic acceleration ion cyclotron waves wave-particle interaction
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