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Study of surface flute modes propagation in a cylindrical metal waveguides with noncircular cross-section and plasma filling

机译:带有非圆形横截面和等离子填充的圆柱形金属波导中表面凹槽模式传播的研究

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Due to needs of modern radio-physics and plasma electronics, the dispersion properties of the plasma filled waveguides of different geometries have been actively studied. Such waveguides are used as the main component of oscillators and amplifiers of high frequency electromagnetic waves and guiders of intense charged particle beams. A theoretical study of surface flute modes (SFM) which can propagate along an azimuthal angular direction in a cylindrical metal waveguide with noncircular cross-section can be useful for elaboration of various radio engineering and plasma electron devices. That is why this paper is devoted to description of the SFM electromagnetic properties. They are studied analytically and numerically by using Maxwell's equations for a description of the SFM fields and cold plasma model with the aid of the successive approximation method.
机译:由于现代无线电物理学和等离子体电子学的需要,已经积极研究了不同几何形状的等离子体填充波导的色散特性。这样的波导被用作高频电磁波的振荡器和放大器以及强带电粒子束的导向器的主要部件。可以在具有非圆形横截面的圆柱形金属波导中沿方位角方向传播的表面凹槽模式(SFM)的理论研究可用于详细说明各种无线电工程和等离子电子设备。这就是为什么本文专门描述SFM电磁特性的原因。借助逐次逼近方法,使用麦克斯韦方程组对SFM场和冷等离子体模型进行了描述性分析和数值研究。

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