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Electronic Metamaterials with Tunable Second-order Optical Nonlinearities

机译:具有可调二阶光学非线性的电子超材料

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摘要

The ability to engineer metamaterials with tunable nonlinear optical properties is crucial for nonlinear optics. Traditionally, metals have been employed to enhance nonlinear optical interactions through field localization. Here, inspired by the electronic properties of materials, we introduce and demonstrate experimentally an asymmetric metal-semiconductor-metal (MSM) metamaterial that exhibits a large and electronically tunable effective second-order optical susceptibility (χ(2)). The induced χ(2) originates from the interaction between the third-order optical susceptibility of the semiconductor (χ(3)) with the engineered internal electric field resulting from the two metals possessing dissimilar work function at its interfaces. We demonstrate a five times larger second-harmonic intensity from the MSM metamaterial, compared to contributions from its constituents with electrically tunable nonlinear coefficient ranging from 2.8 to 15.6 pm/V. Spatial patterning of one of the metals on the semiconductor demonstrates tunable nonlinear diffraction, paving the way for all-optical spatial signal processing with space-invariant and -variant nonlinear impulse response.
机译:设计具有可调非线性光学特性的超材料的能力对于非线性光学至关重要。传统上,已经采用金属来通过场定位增强非线性光学相互作用。在这里,受材料的电子特性的启发,我们引入并实验证明了一种不对称的金属-半导体-金属(MSM)超材料,该材料表现出较大的且可电子调谐的有效二阶光学磁化率(χ(2))。诱导的χ(2)源自半导体的三阶光学磁化率(χ(3))与两者的工程内部电场之间的相互作用在其界面处具有不同功函数的金属。我们证明了MSM超材料的二次谐波强度是电可调非线性系数范围为2.8至15.6 pm / V的五倍大。半导体上的一种金属的空间图案显示出可调谐的非线性衍射,为具有空间不变和非线性非线性脉冲响应的全光学空间信号处理铺平了道路。

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