The multi-peak point phenomenon of broadband microwave reflection caused by inhomogeneous plasma

Min Yang, Kaixuan Qi, Jiuwen Yang, Sa Jia, Haoyan Liu, Yanyang Chen, Jin Li, Xiaoping Li
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Abstract

During spacecraft re-entry, the challenge of measuring plasma sheath parameters directly contributes to difficulties in addressing communication blackout. In this work, we have discovered a phenomenon of multiple peaks in reflection data caused by the inhomogeneous plasma. Simulation results show that the multi-peak points fade away as the characteristic frequency is approached, resembling a series of gradually decreasing peaks. The positions and quantities of these points are positively correlated with electron density, yet they show no relation to collision frequency. This phenomenon is of significant reference value for future studies on the spatial distribution of plasmas, particularly for using microwave reflection signals in diagnosing the plasma sheath.
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非均质等离子体引起的宽带微波反射的多峰点现象
在航天器重返大气层过程中,测量等离子体鞘参数是一项挑战,直接导致通信中断问题难以解决。在这项工作中,我们发现了由不均匀等离子体引起的反射数据中的多峰现象。模拟结果表明,随着特征频率的接近,多峰值点逐渐消失,类似于一系列逐渐减小的峰值。这些点的位置和数量与电子密度呈正相关,但与碰撞频率无关。这一现象对于今后研究等离子体的空间分布,特别是利用微波反射信号诊断等离子体鞘具有重要的参考价值。
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