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Metasurface-assisted phase-matching-free second harmonic generation in lithium niobate waveguides

机译:铌酸锂波导中超表面辅助的无相位匹配二次谐波产生

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摘要

The phase-matching condition is a key aspect in nonlinear wavelength conversion processes, which requires the momenta of the photons involved in the processes to be conserved. Conventionally, nonlinear phase matching is achieved using either birefringent or periodically poled nonlinear crystals, which requires careful dispersion engineering and is usually narrowband. In recent years, metasurfaces consisting of densely packed arrays of optical antennas have been demonstrated to provide an effective optical momentum to bend light in arbitrary ways. Here, we demonstrate that gradient metasurface structures consisting of phased array antennas are able to circumvent the phase-matching requirement in on-chip nonlinear wavelength conversion. We experimentally demonstrate phase-matching-free second harmonic generation over many coherent lengths in thin film lithium niobate waveguides patterned with the gradient metasurfaces. Efficient second harmonic generation in the metasurface-based devices is observed over a wide range of pump wavelengths (λ = 1580–1650 nm).
机译:相位匹配条件是非线性波长转换过程中的关键方面,这要求保守过程中涉及的光子的动量。通常,使用双折射或周期性极化的非线性晶体来实现非线性相位匹配,这需要仔细的色散工程,并且通常是窄带的。近年来,已证明由密集排列的光学天线阵列组成的超表面可提供有效的光动量,以任意方式弯曲光。在这里,我们证明了由相控阵天线组成的梯度超表面结构能够规避片上非线性波长转换中的相位匹配要求。我们实验证明了在梯度相干面图案化的薄膜铌酸锂波导中许多相干长度上无相位匹配的二次谐波产生。在泵浦波长的宽范围内(λ80= –1580–1650 widenm),可以观察到基于超表面的设备中有效的二次谐波产生。

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