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基于非互易三维非线性迂回相位全息图的非对称波前整形

Asymmetric wavefront shaping with nonreciprocal 3D nonlinear detour phase hologram.

作者信息

Wang Bingxia, Li Yilin, Shen Xiang, Krolikowski Wieslaw

出版信息

Opt Express. 2023 Jul 17;31(15):25143-25152. doi: 10.1364/OE.490167.

Abstract

Asymmetric control of light with nonlinear material is of great significance in the design of novel micro-photonic components, such as asymmetric imaging devices and nonreciprocal directional optical filters. However, the use of nonlinear photonic crystals for asymmetric optical transmission, to the best of our knowledge, is still an untouched area of research. Herein we propose the 3D nonlinear detour phase holography for realizing asymmetric SH wavefront shaping by taking advantage of the dependence of the SH phase on the propagation direction of the excitation beam. With the proposed method, the designed nonreciprocal 3D nonlinear detour phase hologram yields SH phases with opposite signs for the forward and backward transmission situations. Moreover, the quasi-phase-matching scheme and orbital angular momentum conservation in the asymmetric SH wavefront shaping process are also discussed. This study conceptually extends the 2D nonlinear detour phase holography into 3D space to build the nonreciprocal 3D nonlinear detour phase hologram for achieving SH twin-image elimination and asymmetric SH wavefront shaping, offering new possibilities for the design of nonreciprocal optical devices.

摘要

利用非线性材料对光进行非对称控制在新型微光子器件设计中具有重要意义,如非对称成像器件和非互易定向光学滤波器。然而,据我们所知,使用非线性光子晶体实现非对称光传输仍是一个未被触及的研究领域。在此,我们提出三维非线性迂回相位全息术,通过利用二次谐波(SH)相位对激发光束传播方向的依赖性来实现非对称SH波前整形。采用该方法,所设计的非互易三维非线性迂回相位全息图在正向和反向传输情况下产生符号相反的SH相位。此外,还讨论了非对称SH波前整形过程中的准相位匹配方案和轨道角动量守恒。本研究从概念上将二维非线性迂回相位全息术扩展到三维空间,构建非互易三维非线性迂回相位全息图以实现SH双像消除和非对称SH波前整形,为非互易光学器件的设计提供了新的可能性。

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