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Light-matter interaction in finite-size plasma systems

机译:有限尺寸等离子体系统中的光物质相互作用

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摘要

It is well known that electromagnetic waves with frequencies below the plasma frequency cannot propagate inside an electron plasma. For plasmas with infinite extensions, this property can be mathematically described by a Bogoliubov transformation of the photonic operators. More generally, the presence of finite-size electron plasmas such as laser-induced atmospheric light strings or metallic nano structures including metamaterials leads to a modification of the light-matter interaction. It is shown how this geometric property can be fully accounted for with the help of adapted mode functions used for the quantization of the electromagnetic field. In addition to the analytical derivations, numerical results for luminescence spectra out of quasi-two-dimensional, planar plasma sheets are presented.
机译:众所周知,频率低于等离子体频率的电磁波不能在电子等离子体内传播。对于具有无限扩展的等离子体,可以通过光子算子的Bogoliubov变换在数学上描述此属性。更一般地,有限尺寸的电子等离子体的存在,例如激光诱导的大气光串或包括超材料的金属纳米结构,导致光-物质相互作用的改变。示出了如何借助于用于电磁场的量化的适配模式函数来充分考虑该几何特性。除分析推导外,还给出了准二维平面等离子片的发光光谱的数值结果。

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