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Anomalous nonlinear absorption in epsilon-near-zero materials: optical limiting and all-optical control

机译:ε近零材料中的异常非线性吸收:光学限制和全光学控制

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We investigate nonlinear absorption in films of epsilon-near-zero materials. The combination of large local electric fields at the fundamental frequency and material losses at the harmonic frequencies induce unusual intensity-dependent phenomena. We predict that the second-order nonlinearity of a low-damping, epsilon-near-zero slab produces an optical limiting effect that mimics a two-photon absorption process. Anomalous absorption profiles that depend on low permittivity values at the pump frequency are also predicted for third-order nonlinearities. These findings suggest new opportunities for all-optical light control and novel ways to design reconfigurable and tunable nonlinear devices. (C) 2016 Optical Society of America
机译:我们研究ε-接近零材料薄膜中的非线性吸收。基频处的大局部电场与谐波频率处的材料损耗共同导致异常的强度相关现象。我们预测,低阻尼,ε接近零的平板的二阶非线性会产生模仿两个光子吸收过程的光学限制效应。对于三阶非线性,还预测了取决于泵浦频率下低介电常数值的异常吸收曲线。这些发现为全光控光提供了新的机遇,并为设计可重构和可调非线性器件提供了新颖的方法。 (C)2016美国眼镜学会

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