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Coherent Terahertz Radiation from Multiple Electron Beams Excitation within a Plasmonic Crystal-like structure

机译:等离子体晶体结构中多电子束激发的相干太赫兹辐射

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摘要

Coherent terahertz radiation from multiple electron beams excitation within a plasmonic crystal-like structure (a three-dimensional holes array) which is composed of multiple stacked layers with 3 × 3 subwavelength holes array has been proposed in this paper. It has been found that in the structure the electromagnetic fields in each hole can be coupled with one another to construct a composite mode with strong field intensity. Therefore, the multiple electron beams injection can excite and efficiently interact with such mode. Meanwhile, the coupling among the electron beams is taken place during the interaction so that a very strong coherent terahertz radiation with high electron conversion efficiency can be generated. Furthermore, due to the coupling, the starting current density of this mechanism is much lower than that of traditional electron beam-driven terahertz sources. This multi-beam radiation system may provide a favorable way to combine photonics structure with electronics excitation to generate middle, high power terahertz radiation.
机译:提出了由等离子晶体状结构(三维孔阵列)激发的多个电子束的相干太赫兹辐射,该结构由具有3××3个亚波长孔阵列的多个堆叠层组成。已经发现,在该结构中,每个孔中的电磁场可以彼此耦合以构造具有强场强的复合模式。因此,多电子束注入可以激发并有效地与这种模式相互作用。同时,在相互作用期间发生电子束之间的耦合,从而可以产生具有高电子转换效率的非常强的相干太赫兹辐射。此外,由于耦合,该机构的启动电流密度远低于传统的电子束驱动的太赫兹源。这种多光束辐射系统可以提供一种将光子结构与电子激发相结合以产生中高功率太赫兹辐射的有利方法。

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