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首页> 外文期刊>Plasma Science, IEEE Transactions on >Relativistic Electron Beam Excitation of Surface Fields in Artificial Materials Based on One- and Two-Dimensional Periodic Structures
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Relativistic Electron Beam Excitation of Surface Fields in Artificial Materials Based on One- and Two-Dimensional Periodic Structures

机译:基于一维和二维周期性结构的相对论电子束对人工材料表面场的激发

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摘要

The understanding of the evolution of the electromagnetic (EM) fields on the surface of a metamaterial which mitigates the nonlinear nonstationary interactions between nonneutral plasmas such as relativistic electrons and EM fields is an important and challenging problem. Studies in this field have recently led to many breakthroughs in optics, vacuum electronics, and photonics. The realization of many ideas, as well as bridging the terahertz gap, is strongly linked to understanding and controlling the EM field's evolution inside and on the surface of artificial materials.
机译:对超材料表面的电磁场演化的理解,这缓解了相对论性电子等非中性等离子体与电磁场之间的非线性非平稳相互作用,这是一个重要且具有挑战性的问题。最近,该领域的研究在光学,真空电子和光子学领域取得了许多突破。许多想法的实现以及弥合太赫兹的差距,与理解和控制人工材料内部和表面上电磁场的发展密切相关。

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