Oblique streaming waves observed in multipactor-induced plasma discharge above a dielectric surface

Biemeng Jin, Jian Chen, Guang-Yu Sun, Zhibin Wang, Haomin Sun
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Abstract

In a recent discovery (Phys. Rev. Lett. 129, 045001, 2022), streaming waves were found in multipactor-induced plasma discharges. However, due to the limitations of a 1D simulation setup, these waves displayed only transverse dynamics. In this letter, an extended 2D particle-in-cell/Monte Carlo model is used to simulate multipactor-induced plasma discharge above a dielectric surface. The results reveal that the streaming waves are not solely transverse but oblique, featuring both transverse and longitudinal components of the wave vector. Furthermore, it is identified that the sheath-accelerated field-emission electrons, rather than the previously reported secondary emission electrons, predominantly cause the excitation of streaming waves. The simulated wave spectrum achieves an excellent agreement with the theoretical dispersion relation. The identification of oblique streaming waves provides new insights into multipactor physics and is anticipated to inspire novel mitigation strategies for multipactor-induced breakdown processes.
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在介质表面上方的多反应器诱导等离子体放电中观测到的斜流波
在最近的一项发现(《物理评论快报》129, 045001, 2022年)中,在多反应器诱导的等离子体放电中发现了流波。然而,由于一维模拟设置的限制,这些波只显示了横向动力学。在这封信中,我们使用了一个扩展的二维粒子-胞中/蒙特卡洛模型来模拟介电质表面上方多反应器诱导的等离子体放电。结果表明,流波不仅是横波,而且是斜波,波矢量的横向和纵向分量都有。此外,还发现主要是鞘加速场发射电子而非之前报道的二次发射电子导致了流波的激发。模拟波谱与理论色散关系非常吻合。斜流波的识别为多反应器物理学提供了新的见解,并有望为多反应器引起的击穿过程提供新的缓解策略。
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