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螺旋电介质极化螺旋中非平凡的相位匹配:通用相位匹配理论、验证和电开关。

Nontrivial phase matching in helielectric polarization helices: Universal phase matching theory, validation, and electric switching.

机构信息

Advanced Institute for Soft Matter Science and Technology, School of Emergent Soft Matter, South China University of Technology, 510640 Guangzhou, China.

Guangdong Provincial Key Laboratory of Functional and Intelligent Hybrid Materials and Devices, South China University of Technology, 510640 Guangzhou, China.

出版信息

Proc Natl Acad Sci U S A. 2022 Jul 19;119(29):e2205636119. doi: 10.1073/pnas.2205636119. Epub 2022 Jul 12.

Abstract

Second-order optical nonlinearity is the essential concept for realizing modern technologies of optical wavelength conversion. The emerging helical polarization fluid, dubbed helielectric nematic, now makes it possible to design and easily fabricate various polarization structures and control their optical responses. The matter family is demonstrated as an ideal liquid platform for nonlinear optical conversion and amplification with electric-reconfigurable tunability. We here develop a universal phase matching theory and reveal a nonclassic chirality-sensitive phase-matching condition in the polarization helices through both the numerical calculation and the experimental validations. The nonlinear optical amplification can be dramatically modulated with a contrast ratio of >100:1 by an in-plane electric field. Furthermore, we employ the director relaxation under electric fields coupled with nonlinear optical simulation to clarify the topology-light interactions.

摘要

二阶光学非线性是实现光波长转换现代技术的必要概念。新兴的螺旋极化流体,称为螺旋介晶,现在可以设计并轻松制造各种偏振结构,并控制其光学响应。物质家族被证明是具有电可重构可调谐性的非线性光学转换和放大的理想液体平台。我们在这里开发了一种通用的相位匹配理论,并通过数值计算和实验验证揭示了在极化螺旋中存在非经典手征敏感性的相位匹配条件。通过平面内电场,非线性光学放大可以以 >100:1 的对比度比进行显著调制。此外,我们利用电场下的指向矢弛豫与非线性光学模拟相结合来阐明拓扑-光相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2948/9304031/5d69778d9aa6/pnas.2205636119fig01.jpg

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