首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Dependence of plasma sheet energy fluxes and currents on solar wind-magnetosphere coupling
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Dependence of plasma sheet energy fluxes and currents on solar wind-magnetosphere coupling

机译:依赖能量通量和等离子体的表电流在太阳能wind-magnetosphere耦合

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The epsilon solar wind-magnetosphere coupling function was used to estimate the rate at which energy from the solar wind was being dissipated in the inner magnetosphere and ionosphere. The Geotail CPI ion and electron data sets showed that the average percentage of this energy that was carried earthward by energetic particles at |z| < 2.5 R _E in the central plasma sheet increased from approximately zero at x =-28 R _E to 25% at x =-10 R _E when epsilon was high. Much of this increase was attributed to the adiabatic energization of particles as flux tubes collapsed following reconnection events. The Geotail magnetometer and CPI ion data sets also were used to estimate the average electric fields and currents. These parameters provided an alternative viewpoint from which to examine particle energization. The parallel volume current density exhibited a stronger dependence on epsilon than did the perpendicular sheet current density. During disturbed times, a maximum of the parallel current density at a fixed x, y location existed at a distance of ~3 R _E from the neutral sheet. A strong dawn-dusk asymmetry was seen in the long-term averaged region 1 field-aligned currents. The ratio of upgoing dusk side to downgoing dawn side currents at the same x was ~1.7 throughout the portion of the plasma sheet that could be studied, and was seen during both quiet and disturbed conditions. Previous papers showed that most of this excess upgoing dusk side parallel current was closed through connections to a dusk side downgoing region 0 current system.
机译:ε太阳能wind-magnetosphere耦合函数是用来估计的速度太阳风的能量正在消散内磁层、电离层。Geotail CPI离子和电子数据集显示这种能量的平均百分比是由高能粒子在向地球z | | < 2.5 R _E中部等离子板从大约增加0 x = -28 R _E25%在x = -10 R _Eε时高。这个增加是由于绝热通电的粒子通量管崩溃后重新连接事件。磁强计和CPI离子数据集也被使用估计平均电场和电流。选择研究的观点粒子激发。电流密度表现出更强的依赖在ε比垂直表电流密度。最大的电流密度在一个平行固定的x, y位置存在的距离~ 3 R_E中性表。不对称的长期平均区域1 field-aligned电流。上行下行侧电流黎明黄昏的一面在同一x ~ 1.7整个部分等离子体表,可以研究,在安静和干扰的条件。之前的文件显示,大多数的过剩向上移动的黄昏侧并联电流关闭通过连接一个黄昏下行地区0当前系统。

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