Broadband nonlinear conversion and random quasi-phase-matching in transparent glass composite

Author:

Cao Jinwei,Lun Yipeng1,Huang Xingzhao1,Li Siyun,Lu Rongtai,Zhang Meihui,Lu Xu2,Sun M.2ORCID,Yu Huakang1ORCID,Qian Q.

Affiliation:

1. South China University of Technology

2. Xi’an Jiaotong University

Abstract

With the development of laser technology, nonlinear optics plays a crucial role in frequency conversion. However, the generation of second harmonics in nonlinear optical crystals is generally subject to rigorous phase-matching conditions that hinder the performance of broadband tunability. It is believed that introducing disorders in nonlinear optical materials is helpful to overcome this obstacle. In this work, we have prepared a nonlinear microcrystal-doped glass (NMG) composite material, allowing for tunable and polarization-independent nonlinear conversion from visible to near-infrared. The linear dependence of SHG intensity versus sample thickness indicated the facilitation of random quasi-phase matching by using the NMG. Our results provide a more stable and promising platform for disordered nonlinear photonic materials and suggest the possibility of more efficient nonlinear conversions using the NMG composite glass fibers in future.

Funder

National Natural Science Foundation of China

The 2021 Talent Revitalization Plan Project for New High Performance Material Industry in Qingyuan City

Fundamental Research Funds for the Central Universities

Publisher

Optica Publishing Group

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