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Nonlocality-driven supercontinuum white light generation in plasmonic nanostructures

机译:等离子体纳米结构中非局部性驱动的超连续谱白光产生

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摘要

Structured plasmonic metals are widely employed for achieving nonlinear functionalities at the nanoscale due to their ability to confine and enhance electromagnetic fields and strong, inherent nonlinearity. Optical nonlinearities in centrosymmetric metals are dominated by conduction electron dynamics, which at the nanoscale can be significantly affected by the nonlocal effects. Here we show that nonlocal corrections, being usually small in the linear optical response, define nonlinear properties of plasmonic nanostructures. Using a full non-perturbative time-domain hydrodynamic description of electron plasma under femtosecond excitation, we numerically investigate harmonic generation in metallic Archimedean nanospirals, revealing the interplay between geometric and nonlocal effects. The quantum pressure term in the nonlinear hydrodynamic model results in the emergence of fractional nonlinear harmonics leading to broadband coherent white-light generation. The described effects present a novel class of nonlinear phenomena in metallic nanostructures determined by nonlocality of the electron response.
机译:结构化等离激元金属由于能够限制和增强电磁场以及强大的固有非线性而被广泛用于实现纳米级的非线性功能。中心对称金属中的光学非线性主要由传导电子动力学决定,在纳米尺度上,非局部效应会显着影响传导电子动力学。在这里,我们显示出通常在线性光学响应中较小的非局部校正定义了等离子体纳米结构的非线性特性。使用飞秒激发下的电子等离子体的完整的非扰动时域流体力学描述,我们对金属阿基米德纳米螺旋中的谐波产生进行了数值研究,揭示了几何效应与非局部效应之间的相互作用。非线性流体动力学模型中的量子压力项导致分数阶非线性谐波的出现,导致宽带相干白光的产生。所描述的效应在金属纳米结构中呈现了一类新颖的非线性现象,该现象由电子响应的非局部性决定。

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