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铌酸锂薄膜超表面中的手性控制二阶非线性频率转换

Chirality-controlled second-order nonlinear frequency conversion in lithium niobate film metasurfaces.

作者信息

Xu Hangsheng, Ma Ruize, Zhu Ying, Dong Anlong, Jiang Haiyan, Gao Weiqing, Qin Meng, Liu Jianqiang, Wu Feng, Li Hongju

出版信息

Opt Lett. 2024 Nov 15;49(22):6405-6408. doi: 10.1364/OL.538625.

Abstract

The high-quality factor resonant metasurfaces have extensive applications in enhancing nonlinear frequency conversion efficiency at the subwavelength scale. However, methods for actively modulating the frequency conversion process are limited. We design a chiral lithium niobate film metasurface and investigate the photonic spin as a new degree of freedom to dynamically control the second-order nonlinear frequency conversion, without reconfiguring the structure by using external stimuli. The chiral resonance with circular dichroism (CD) of 0.62 gives rise to a high nonlinear CD of 0.84 in second-harmonic generation efficiency. Interestingly, combining the chiral resonance and an achiral quasi-bound state in the continuum enables us to investigate the photonic-spin-controlled sum-frequency generation and the photon pair generation from the spontaneous parametric downconversion process. Owing to the ultrahigh quality factor exceeding 10 both for two resonances, the second-order nonlinear frequency conversion occurs at a wavelength region of 0.2 nm, suggesting good monochromaticity. Our work opens new, to our knowledge, avenues for practical implementation of dynamically controlled nonlinear optical devices and will find utility in holography, switchable light sources, and information processing.

摘要

高品质因子谐振超表面在亚波长尺度上提高非线性频率转换效率方面有广泛应用。然而,主动调制频率转换过程的方法有限。我们设计了一种手性铌酸锂薄膜超表面,并研究了光子自旋作为一种新的自由度,以动态控制二阶非线性频率转换,而无需通过外部刺激重新配置结构。具有0.62圆二色性(CD)的手性共振在二次谐波产生效率中产生了0.84的高非线性CD。有趣的是,将手性共振与连续统中的非手性准束缚态相结合,使我们能够研究光子自旋控制的和频产生以及自发参量下转换过程中的光子对产生。由于两种共振的超高品质因子均超过10,二阶非线性频率转换发生在0.2 nm的波长区域,表明单色性良好。据我们所知,我们的工作为动态控制非线性光学器件的实际应用开辟了新途径,并将在全息术、可切换光源和信息处理中得到应用。

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