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Nanoscale optical pulse limiter enabled by refractory metallic quantum wells

机译:纳米级光脉冲限制器由耐火金属量子阱启用

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The past several decades have witnessed rapid development of high-intensity, ultrashort pulse lasers, enabling deeper laboratory investigation of nonlinear optics, plasma physics, and quantum science and technology than previously possible. Naturally, with their increasing use, the risk of accidental damage to optical detection systems rises commensurately. Thus, various optical limiting mechanisms and devices have been proposed. However, restricted by the weak optical nonlinearity of natural materials, state-of-the-art optical limiters rely on bulk liquid or solid media, operating in the transmission mode. Device miniaturization becomes complicated with these designs while maintaining superior integrability and controllability. Here, we demonstrate a reflection-mode pulse limiter (sub–100 nm) using nanoscale refractory films made of Alsub2/subOsub3/sub/TiN/Alsub2/subOsub3/sub metallic quantum wells (MQWs), which provide large and ultrafast Kerr-type optical nonlinearities due to the quantum size effect of the MQW. Functional multilayers consisting of these MQWs could find important applications in nanophotonics, nonlinear optics, and meta-optics.
机译:过去几十年目睹了高强度,超短脉冲激光器的快速发展,实现了对非线性光学,等离子体物理和量子科学和技术的更深层次的实验室调查而不是以前可能的。当然,随着它们的增加,光学检测系统意外损坏的风险升高。因此,已经提出了各种光学限制机构和装置。然而,受天然材料的弱光学非线性的限制,最先进的光学器件依赖于散装液体或固体介质,在传输模式下操作。设备小型化与这些设计变得复杂,同时保持卓越的可积和可控性。这里,我们使用由Al 2 O 3 / tin / Al 2 3 /锡/π 2 O 3 金属量子阱(MQW),其由于MQW的量子尺寸效应而提供大型和超快的KERR型光学非线性。由这些MQWS组成的功能多层可以在纳米光电学,非线性光学和元光学中找到重要的应用。

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