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The cleft ion fountain: a two-dimensional kinetic model

机译:裂隙离子源:二维动力学模型

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摘要

The transport of ionospheric ions from a source in the polar cleft ionosphere through the polar magnetosphere is investigated using a two-dimensional, kinetic, trajectory-based code. The transport model includes the effects of gravitation, longitudinal magnetic gradient force, convection electric fields, and parallel electric fields. Individual ion trajectories as well as distribution functions and resulting bulk parameters of density, parallel average energy, and parallel flux for a presumed cleft ionosphere source distribution are presented for various conditions to illustrate parametrically the dependences on source energies, convection electric field strengths, ion masses, and parallel electric field strengths. The essential features of the model are consistent with the concept of a cleft-based ion fountain supplying ionospheric ions to the polar magnetosphere, and the resulting plasma distributions and parameters are in general agreement with recent low-energy ion measurements from the DE 1 satellite.
机译:使用二维,基于动力学,基于轨迹的代码研究了极地裂隙电离层中一个源的电离层离子通过极地磁层的传输。输运模型包括重力,纵向磁梯度力,对流电场和平行电场的影响。给出了各种条件下单个裂口电离层源分布的各个离子轨迹以及分布函数以及由此产生的密度,平行平均能量和平行通量的整体参数,以参数方式说明对源能量,对流电场强度,离子质量的依赖性,以及平行电场强度。该模型的基本特征与基于裂隙的离子源向极磁层提供电离层离子的概念相一致,并且产生的等离子体分布和参数与最近从DE 1卫星进行的低能离子测量基本一致。

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