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非线性迂回相位全息术。

Nonlinear detour phase holography.

作者信息

Wang Bingxia, Hong Xuanmiao, Wang Kai, Chen Xin, Liu Shan, Krolikowski Wieslaw, Lu Peixiang, Sheng Yan

机构信息

Wuhan National Laboratory for Optoelectronics and School of Physics, Huazhong University of Science and Technology, Wuhan 430074, China.

School of Physics and Optoelectronics Engineering, Xidian University, Xi'an 710071, China.

出版信息

Nanoscale. 2021 Feb 4;13(4):2693-2702. doi: 10.1039/d0nr07069f.

Abstract

Nonlinear photonic crystals are capable of highly efficient nonlinear wavefront manipulation, providing a promising platform for compact and large-scale integrated nonlinear devices. However, the current nonlinear encoding methods for nonlinear photonic crystals inherently require a number of disordered and complex microstructures, which are quite challenging in a real fabrication process. Herein we propose and experimentally demonstrate a nonlinear detour phase method for nonlinear wavefront manipulation in nonlinear photonic crystals. With the proposed method, the designed nonlinear detour phase hologram only requires a set of basic building blocks with simple shapes, which are easy to fabricate by using the femtosecond laser writing technique. The second-harmonic hologram is demonstrated by designing the nonlinear detour phase patterns, and the quasi-phase-matching scheme in the second-harmonic holographic imaging process is also discussed. This study conceptually extends the conventional detour phase method into the nonlinear regime, offering new possibilities for compact nonlinear micro-devices with multi-functions.

摘要

非线性光子晶体能够实现高效的非线性波前操控,为紧凑且大规模集成的非线性器件提供了一个有前景的平台。然而,当前用于非线性光子晶体的非线性编码方法本质上需要大量无序且复杂的微结构,这在实际制造过程中极具挑战性。在此,我们提出并通过实验证明了一种用于非线性光子晶体中非线性波前操控的非线性迂回相位方法。采用该方法,所设计的非线性迂回相位全息图仅需要一组形状简单的基本构建块,利用飞秒激光写入技术很容易制造出来。通过设计非线性迂回相位图案展示了二次谐波全息图,并讨论了二次谐波全息成像过程中的准相位匹配方案。本研究从概念上将传统的迂回相位方法扩展到了非线性领域,为多功能紧凑非线性微器件提供了新的可能性。

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