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The Characteristics of EMIC Waves in the Magnetosphere Based on the Van Allen Probes and Arase Observations

机译:位的波的特点基于范艾伦辐射探测器和磁层Arase观察

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We performed a comprehensive statistical study of electromagnetic ion cyclotron (EMIC) waves observed by the Van Allen Probes and Exploration of energization and Radiation in Geospace satellite (ERG/Arase). From 2017 to 2018, we identified and categorized EMIC wave events with respect to wavebands (H+ and He+ EMIC waves) and relative locations from the plasmasphere (inside and outside the plasmasphere). We found that H+ EMIC waves in the morning sector at L > 8 are predominantly observed with a mixture of linear and right-handed polarity and higher wave normal angles during quiet geomagnetic conditions. Both H+ and He+ EMIC waves observed in the noon sector at L ~ 4-6 have lefthanded polarity and lower wave normal angles at |MLAT| 8 during geomagnetic quiet conditions. Based on distinct characteristics at different EMIC wave occurrence regions, we suggest that EMIC waves in the magnetosphere can be generated by different free energy sources. Possible sources include the freshly injected particles from the plasma sheet, adiabatic heating by dayside magnetospheric compressions, suprathermal proton heating by magnetosonic waves, and off-equatorial sources.
机译:我们进行了一个全面的统计研究电磁离子回旋波(位的)观察到的范艾伦辐射探测器和探索地球空间的激发和辐射卫星(ERG / Arase)。识别和分类与波位的事件对波段(H +, +波位的)从等离子体层(在相对位置和等离子体层外)。位的波浪在早上部门在L > 8主要观察与线性的混合物和右撇子的极性和更高的波正常在安静的地磁环境角度。H +, +位的波浪中观察到中午在L ~ 4 - 6有左手的极性和较低波正常角度| MLAT | 8安静的环境。特征在不同位的波出现地区,我们建议位的波浪磁气圈可以产生不同的自由能源。新鲜注入粒子的等离子体,绝热加热的光面磁层按压,suprathermal质子加热magnetosonic波,和off-equatorial来源。

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