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Optical Metasurfaces Based on Epsilon-Near-Zero Materials: Towards Low Power Nonlinear Optics

机译:基于Epsilon近零材料的光学超表面:朝低功率非线性光学迈进

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Epsilon near zero (ENZ) materials are a promising candidate for nonlinear applications. Specifically, thin-film ENZ materials can demonstrate strong field enhancements and large optically induced refractive index changes, enhanced further through plasmonic antennas in a metasurfaces geometry. In this paper, we investigate the thermo-optic response of such ENZ metasurfaces and present a novel method for characterising the nonlinear phase shift, based on Hilbert transforms. Specifically, the thermo-optic response of the material can be fully characterised by measuring two transmission spectra, at low and high pump power. Through the Hilbert transformations, the phase response associated with each transmission spectrum can be calculated, allowing a characterisation of both the real and imaginary component of the nonlinear transmission function. Using this new approach, we show strong thermo-optic responses for sub-mW optical pumping, opening the way towards low power nonlinear optics.
机译:Epsilon近零(ENZ)材料是用于非线性应用的有前途的候选材料。具体来说,薄膜ENZ材料可以表现出强场增强和较大的光学感应折射率变化,通过超表面几何形状中的等离激元天线可以进一步增强。在本文中,我们研究了此类ENZ超表面的热光响应,并基于希尔伯特变换提出了一种表征非线性相移的新方法。具体而言,可以通过在低和高泵浦功率下测量两个透射光谱来充分表征材料的热光响应。通过希尔伯特变换,可以计算与每个透射谱相关的相位响应,从而可以表征非线性透射函数的实部和虚部。使用这种新方法,我们表现出了对亚兆瓦级光泵浦的强大的热光响应,从而为低功率非线性光学打开了道路。

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