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Giant Kerr response of ultrathin gold films from quantum size effect

机译:量子尺寸效应对超薄金膜的Giant Kerr响应

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摘要

With the size of plasmonic devices entering into the nanoscale region, the impact of quantum physics needs to be considered. In the past, the quantum size effect on linear material properties has been studied extensively. However, the nonlinear aspects have not been explored much so far. On the other hand, much effort has been put into the field of integrated nonlinear optics and a medium with large nonlinearity is desirable. Here we study the optical nonlinear properties of a nanometre scale gold quantum well by using the z -scan method and nonlinear spectrum broadening technique. The quantum size effect results in a giant optical Kerr susceptibility, which is four orders of magnitude higher than the intrinsic value of bulk gold and several orders larger than traditional nonlinear media. Such high nonlinearity enables efficient nonlinear interaction within a microscopic footprint, making quantum metallic films a promising candidate for integrated nonlinear optical applications.
机译:随着等离子设备的尺寸进入纳米级区域,需要考虑量子物理学的影响。过去,量子尺寸对线性材料性能的影响已得到广泛研究。然而,到目前为止,非线性方面还没有被探索。另一方面,在集成非线性光学领域已经付出了很多努力,并且期望具有大非线性的介质。在这里,我们使用z扫描法和非线性光谱展宽技术研究了纳米级金量子阱的光学非线性性质。量子尺寸效应导致巨大的光学Kerr磁化率,这比块状金的固有值高四个数量级,比传统的非线性介质大几个数量级。如此高的非线性度使得能够在微观足迹内进行有效的非线性相互作用,从而使量子金属膜成为集成非线性光学应用的有希望的候选者。

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