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Plasma Impedance Probe: Simulations and Comparison to Sounding Rocket Mission Data

机译:等离子体阻抗探头:探测火箭任务数据的模拟和比较

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摘要

We report some initial results of simulation and data analysis of a radio-frequency plasma impedance probe flown on sounding rockets. This instrument is used to measure the absolute electron density and electron-neutral collision frequency at ionospheric altitudes. A plasma-fluid finite-difference time-domain (PF-FDTD) simulation is used in conjunction with simpler analytical formulas by Balmain to match the measurements to theory. The effects of an inhomogeneous conical profile or a warm plasma on the impedance are then studied using an improved version of the PF-FDTD model. The effect of spacecraft plasma wake on impedance measurements is qualitatively analyzed using the conical approximation. In particular, a model of the electron wake structure is created for the Sudden Atom Layer (SAL) sounding rocket mission. The spin modulation observed in the electron density measurements during the SAL mission is analyzed. We use the fluid simulation results to suggest corrections to electron density and electron-neutral collision frequency estimates made during sounding rocket missions.
机译:我们报告了在探空火箭上飞行的射频等离子体阻抗探针的仿真和数据分析的一些初步结果。该仪器用于测量电离层高度的绝对电子密度和电子中性碰撞频率。等离子体流体有限差分时域(PF-FDTD)仿真与Balmain的简单解析公式结合使用,以使测量结果与理论相符。然后使用改进版的PF-FDTD模型研究不均匀圆锥形轮廓或热等离子体对阻抗的影响。使用圆锥近似定性分析了航天器等离子体唤醒对阻抗测量的影响。特别是,为突然的原子层(SAL)探测火箭任务创建了电子尾迹结构的模型。分析在SAL任务期间在电子密度测量中观察到的自旋调制。我们使用流体模拟结果来建议在探测火箭任务期间对电子密度和电子中性碰撞频率估计值进行校正。

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