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Overshoot dependence on the cross-shock potential

机译:过度依赖于交叉震荡潜力

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Coherent downstream oscillations of the magnetic field in shocks are produced due to the coherent ion gyration and quasiperiodic variations of the ion pressure. The amplitude and the positions of the pressure maxima and minima depend on the cross-shock potential and upstream ion temperature. Two critical cross-shock potentials are defined: the critical gyration potential (CGP), which separates the cases of increase or decrease in the component of the velocity of the distribution center along the shock normal, and the critical reflection potential (CRP), above which ion reflection becomes significant. In a weak, very low upstream kinetic-to-magnetic pressure ratio, beta, the shocks' CRP exceeds the CGP. For potentials below the CGP, the first downstream maximum of the magnetic field is shifted farther downstream and is larger than the second maximum. For higher potentials, the first maximum occurs just behind the ramp and is lower than the second maximum. With the increase in the upstream temperature, the CGP exceeds the CRP. For potentials below the CRP, the effects of ion reflection are negligible and the shock profile is similar to that of very low-beta shocks. If the potential exceeds the CRP, ion reflection is significant, the magnetic field increase toward the overshoot becomes steeper, and the largest peak occurs at the downstream edge of the ramp.
机译:由于离子压力的相干离子啮合和QuaSiodic变化,产生冲击中的磁场的相干下游振荡。压力最大值和最小值的幅度和位置取决于横击电位和上游离子温度。定义了两个关键的横击电位:临界环绕电位(CGP),其将分配中心的速度增加或减少的情况分开沿着冲击正常,以及临界反射电位(CRP),以及上面的临界反射电位哪种离子反射变得显着。在弱,非常低的上游动力学压力比,Beta,冲击的CRP超过CGP。对于CGP以下的电位,磁场的第一下游最大值在下游移动得更远,并且大于第二最大值。对于更高的电位,第一个最大值就在斜坡后面发生并且低于第二个最大值。随着上游温度的增加,CGP超过CRP。对于下面的CRP的电位,离子反射的影响可以忽略不计,并且震动轮廓类似于非常低β冲击的效果。如果电位超过CRP,则离子反射显着,磁场向过冲变为陡峭,并且最大峰在斜坡的下游边缘发生。

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