Gong Sen, Hu Min, Zhong Renbin, Chen Xiaoxing, Zhang Ping, Zhao Tao, Liu Shenggang
Opt Express. 2014 Aug 11;22(16):19252-61. doi: 10.1364/OE.22.019252.
In this paper, the excitations of surface plasmon polaritons (SPPs) by both perpendicular and parallel electron beam are investigated. The results of analytical theory and numerical calculation show that the mechanisms of these two excitations are essentially different, and the behavior and properties of SPPs in metal structures strongly depend on the methods of excitation. For the perpendicular excitation, SPPs contain plenty of frequency components, propagate with attenuation and are always accompanied with the transition radiation. Whereas for parallel excitation, SPPs waves are coherent, tunable, propagating without attenuation and the transition radiation does not occur. We also show that there are two modes for the parallel excited SPPs on the metal films and they all can be excited efficiently by the parallel moving electron beam. And the operating frequency of SPPs can be tuned in a large frequency range by adjusting the beam energy.
本文研究了垂直和平行电子束对表面等离激元极化激元(SPPs)的激发。解析理论和数值计算结果表明,这两种激发机制本质上不同,金属结构中SPPs的行为和特性强烈依赖于激发方式。对于垂直激发,SPPs包含大量频率成分,以衰减形式传播且总是伴随着过渡辐射。而对于平行激发,SPPs波是相干的、可调谐的,无衰减传播且不发生过渡辐射。我们还表明,金属薄膜上平行激发的SPPs有两种模式,它们都能被平行移动的电子束有效激发。并且通过调整束流能量,SPPs的工作频率可以在很大的频率范围内进行调谐。