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Scattering, interference, and switching of ultrashort surface plasmon polaritons

机译:超短表面等离子体极性官散射,干扰和切换

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Ultrafast interactions of surface plasmon-polaritons (SPPs) in systems with multiple coherently excited SPP and light beams are studied. SPPs on thin metallic films are excited by local scattering of the laser light on surface nanostructures consisting of polymeric or metallic ridges [1] and grooves. SPP interaction and scattering effects are investigated by leakage radiation microscopy (LRM) [2]. The interference of SPPs inside dielectrically-loaded SPP waveguides [3] as well as the interference of SPPs with additional light fields is used for tracking the propagation of ultrashort SPP pulses excited by 60 fs laser pulses at a central wavelength of 800 nm. We present results on SPP autocorrelation, allowing the SPP dispersion and pulse durations to be measured. An example of a LRM image of an interference pattern of two counter-propagating SPPs inside a dielectrically-loaded waveguide is shown in Fig. 1. Furthermore, we demonstrate ultrafast scattering of propagating SPPs on regions of metal films pumped by additional laser pulses. In a time-delay pump-probe experiment it is shown that this SPP scattering occurs on the time scale of the pulse duration. Applications of this effect as ultrafast SPP switches are discussed.
机译:研究了表面等离子体 - 极性子(SPP)在具有多个连贯的SPP和光束的系统中的超快相互作用。薄金属膜上的SPP通过局部纳米结构上的局部散射来激发,由聚合物或金属脊[1]和凹槽组成。通过泄漏辐射显微镜(LRM)研究SPP相互作用和散射效果[2]。介电加载的SPP波导[3]内的SPP的干扰以及具有附加光场的SPP的干扰用于跟踪在800nm的中心波长的60 fs激光脉冲中激发的超短SPP脉冲的传播。我们呈现SPP自相关的结果,允许测量SPP分散和脉冲持续时间。在图1中示出了介电加载的波导内的两个反传播SPP的干扰图案的LRM图像的示例。此外,我们证明了在由附加激光脉冲泵送的金属膜区域上传播SPP的超快散射。在时滞泵探针实验中,示出该SPP散射在脉冲持续时间的时间比例上发生。讨论了这种效果的应用作为超快SPP交换机。

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