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A simulation study of the current-voltage relationship of the Io tail aurora

机译:电流电压的模拟研究关系的Io尾巴极光

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The Io tail aurora extends for approximately 100 degrees downstream in longitude from the Io footprint aurora. Observations indicate that the brightness of the Io tail aurora continuously decreases along the footpath while its peak altitude remains constant. According to the quasi-steady theoretical frame, this suggests that the field-aligned voltage is constant while the parallel current density decreases in the downstream direction. The mechanism that realizes the current-voltage relationship of the Io tail aurora remains unresolved. In this paper, we apply a new multimagnetofluid code to the Io-Jupiter system to clarify the origin of the current-voltage relationship. The code solves a set of equations that includes the electron convection term in Ohm's law, which enables us to simulate the current-driven ion acoustic instability in the fluid frame. The instability forms a transition layer at a high altitude, which accelerates the magnetospheric electrons and blocks the magnetospheric ions, leading to the formation of a density depleted region called an auroral cavity. We find that if the ionospheric proton density decreases at the same rate as the parallel current density, the timescale on which the transition layer disappears is consistent with the longitudinal extent of the tail aurora, and the potential gap is constant all along the tail. We discuss the possibility that the fringe, wideband repetitive bursts of the Io-related Jovian decametric radiation, is excited in the auroral cavity.
机译:Io尾巴极光延伸约100度下游经度的Io足迹极光。亮度的Io尾巴不断极光沿着人行道而减少高峰高度保持不变。准稳定的理论框架,这说明field-aligned电压是恒定的平行电流密度降低下游方向。输入输出的电流电压关系的尾巴极光仍未得到解决。应用一个新的multimagnetofluid代码Io-Jupiter系统阐明的起源电流电压的关系。方程组包括电子对流项欧姆定律,这使我们能够模拟current-driven离子声波不稳定的液体。在高海拔地区,形成了一个过渡层加速磁性层的电子呢块磁性层的离子,导致密度的区域的形成一个极光腔。电离层质子密度减少的平行的电流密度,速度时间尺度的过渡层消失与纵向一致的尾巴极光,和潜在的缺口是恒定的尾巴。边缘的可能性、宽带重复破裂的Io-related威风凛凛的十米极光腔辐射,很兴奋。

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