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Backward Phase Matching for Second Harmonic Generation in Negative‐Index Conformal Surface Plasmonic Metamaterials

机译:负形共形表面等离子体超材料中第二谐波产生的后向相位匹配

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摘要

Backward phase matching, which describes counterpropagating fundamental and harmonic waves in a negative‐index medium, is one of the most intriguing phenomena in nonlinear metamaterials. Predicted theoretically decades ago, however, it is still a challenging task to be applied for efficient second harmonic (SH) generation in a nonlinear metamaterial with ultrathin geometry and ultralow loss. Here, a negative‐index spoof plasmonic metamaterial is reported, which is composed of an ultrathin symmetrical corrugated metallic strips loaded with nonlinear active devices. The simulated and measured power spectra and surface near‐field distributions show that a peak SH signal can be generated at the backward phase‐matched frequency point in a 120° curved surface with high efficiency, thanks to the ultrathin flexible geometry, significant confinement effect, and large propagation length of the spoof surface plasmons. The results open new technological challenges from nano‐ and micro‐nonlinear photonics to science and engineering of compact, broadband, and efficient frequency‐mixing metamaterials and electromagnetic devices.
机译:反向相位匹配描述了在负折射率介质中反向传播的基波和谐波,是非线性超材料中最引人入胜的现象之一。然而,从理论上预测数十年前,将其应用于具有超薄几何形状和超低损耗的非线性超材料中有效生成二次谐波(SH)仍然是一项艰巨的任务。在这里,报告了一个负折射率的欺骗等离子体超材料,它由超薄对称波纹金属带和非线性有源器件组成。仿真和测量的功率谱以及表面近场分布表明,由于超薄的柔性几何形状,显着的约束效果,可以在120°弯曲表面的反向相位匹配频率点处高效地产生峰值SH信号。欺骗表面等离子体激元的传播长度很大。结果为从纳米和微米非线性光子学到紧凑,宽带,高效混频超材料和电磁设备的科学与工程提出了新的技术挑战。

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