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利用束-等离子体相互作用优化圆柱结构中的电磁波传播:一种模式匹配方法。

Optimizing electromagnetic wave propagation in cylindrical structures with beam-plasma interactions: A mode-matching approach.

作者信息

Rizvi Shahana, Afzal Muhammad

机构信息

Department of Mathematics, Capital University of Science and Technology, Islamabad, Pakistan.

Department of Mathematics and Natural Sciences, Center for Applied Mathematics and Bioinformatics, Gulf University for Science & Technology, Hawally, Kuwait.

出版信息

PLoS One. 2025 Apr 25;20(4):e0320307. doi: 10.1371/journal.pone.0320307. eCollection 2025.

Abstract

This study introduces a method for analyzing the propagation of electromagnetic waves in cylindrical structures with central chambers facilitating beam-plasma interactions, particularly relevant for slow-wave structures in backward wave oscillators. The boundary value problem, governed by the Helmholtz equation, is resolved using the mode-matching technique, yielding an exact solution. The analysis elucidates key phenomena, including reflection, transmission, orthogonality relations, and power flux variations with frequency and material properties. By examining the effects of plasma frequency and beam radius on phase velocity, group velocity, and interaction efficiency, the study provides insights into optimizing wave propagation and energy transfer. The results demonstrate that higher plasma frequencies and reduced beam radii enhance scattering characteristics, offering practical guidance for designing efficient electromagnetic devices.

摘要

本研究介绍了一种分析电磁波在具有促进束 - 等离子体相互作用的中心腔的圆柱形结构中传播的方法,这对于返波振荡器中的慢波结构尤为重要。由亥姆霍兹方程控制的边值问题采用模式匹配技术求解,得到了精确解。该分析阐明了关键现象,包括反射、透射、正交关系以及功率通量随频率和材料特性的变化。通过研究等离子体频率和束半径对相速度、群速度和相互作用效率的影响,该研究为优化波传播和能量转移提供了见解。结果表明,较高的等离子体频率和减小的束半径增强了散射特性,为设计高效电磁装置提供了实际指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b71/12027275/1233f3f3843b/pone.0320307.g001.jpg

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