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Protons and alpha particles in the expanding solar wind: Hybrid simulations

机译:扩大太阳能质子和阿尔法粒子风:混合模拟

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We present results of a two-dimensional hybrid expanding box simulation of a plasma system with three ion populations, beam and core protons, and alpha particles (and fluid electrons), drifting with respect to each other. The expansion with a strictly radial magnetic field leads to a decrease of the ion perpendicular to parallel temperature ratios as well as to an increase of the ratio between the ion relative velocities and the local Alfvén velocity creating a free energy for many different instabilities. The system is most of the time marginally stable with respect to kinetic instabilities mainly due to the ion relative velocities; these instabilities determine the system evolution counteracting some effects of the expansion. Nonlinear evolution of these instabilities leads to large modifications of the ion velocity distribution functions. The beam protons and alpha particles are decelerated with respect to the core protons and all the populations are cooled in the parallel direction and heated in the perpendicular one. On the macroscopic level, the kinetic instabilities cause large departures of the system evolution from the double adiabatic prediction and lead to perpendicular heating and parallel cooling rates which are comparable to the heating rates estimated from the Helios observations. Key Points Ion differential velocities constrained by kinetic instabilitiesInstabilites cause parallel cooling end perpendicular heatingHeating/cooling rates comparable to those obtained from Helios observations
机译:我们提出一个二维混合的结果箱模拟等离子体系统的扩张三个离子数量,梁和核心质子,阿尔法粒子(电子和流体),漂流彼此。严格径向磁场导致的降低离子的垂直于并行温度比率以及增加相对速度和离子之间的比例当地阿尔芬速度创造一个自由能对许多不同的不稳定。大部分时间略微稳定与尊重动力学不稳定主要是由于离子相对速度;确定系统进化抵消一些扩张的影响。这些不稳定导致大的修改的离子速度分布函数。束质子和α粒子减速对质子和所有的核心人口在平行方向上冷却和垂直的加热。宏观层面上,动力不稳定造成大的离职系统进化从绝热预测和导致的两倍垂直的加热和并行冷却率哪些是与加热率估计赫利俄斯的观察。点离子微分速度限制动能instabilitiesInstabilites导致平行冷却结束垂直heatingHeating /冷却利率与那些来自赫利俄斯观察

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