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在χ波导中实现高效倍频程跨度长波红外产生,量子效率达74% 。

Highly efficient octave-spanning long-wavelength infrared generation with a 74% quantum efficiency in a χ waveguide.

作者信息

Hu Bo, Yang Xuemei, Wu Jiangen, Lu Siyi, Yang Hang, Long Zhe, He Linzhen, Luo Xing, Tian Kan, Wang Weizhe, Li Yang, Wu Han, Li Wenlong, Guo Chunyu, Yang Huan, Wang Qi Jie, Liang Houkun

机构信息

School of Electronics and Information Engineering, Sichuan University, 610064, Chengdu, Sichuan, China.

Sino-German College of Intelligent Manufacturing, Shenzhen Technology University, 518118, Shenzhen, Guangdong, China.

出版信息

Nat Commun. 2023 Nov 6;14(1):7125. doi: 10.1038/s41467-023-42912-0.

Abstract

The realization of compact and efficient broadband mid-infrared (MIR) lasers has enormous impacts in promoting MIR spectroscopy for various important applications. A number of well-designed waveguide platforms have been demonstrated for MIR supercontinuum and frequency comb generations based on cubic nonlinearities, but unfortunately third-order nonlinear response is inherently weak. Here, we propose and demonstrate for the first time a χ micrometer waveguide platform based on birefringence phase matching for long-wavelength infrared (LWIR) laser generation with a high quantum efficiency. In a ZnGeP-based waveguide platform, an octave-spanning spectrum covering 5-11 μm is generated through optical parametric generation (OPG). A quantum conversion efficiency of 74% as a new record in LWIR single-pass parametric processes is achieved. The threshold energy is measured as ~616 pJ, reduced by more than 1-order of magnitude as compared to those of MIR OPGs in bulk media. Our prototype micro-waveguide platform could be extended to other χ birefringence crystals and trigger new frontiers of MIR integrated nonlinear photonics.

摘要

实现紧凑高效的宽带中红外(MIR)激光器对推动MIR光谱在各种重要应用中的发展具有巨大影响。基于立方非线性效应,已经展示了许多精心设计的波导平台用于MIR超连续谱和频率梳的产生,但不幸的是,三阶非线性响应本质上较弱。在此,我们首次提出并展示了一种基于双折射相位匹配的用于长波长红外(LWIR)激光产生且具有高量子效率的χ微米波导平台。在基于ZnGeP的波导平台中,通过光学参量产生(OPG)产生了覆盖5 - 11μm的倍频程跨度光谱。在LWIR单程参量过程中实现了74%的量子转换效率,创造了新纪录。测得的阈值能量约为616 pJ,与体介质中的MIR OPG相比降低了一个多数量级。我们的原型微纳波导平台可扩展到其他χ双折射晶体,并开启MIR集成非线性光子学的新前沿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1f1/10628208/4c39a8ecd464/41467_2023_42912_Fig1_HTML.jpg

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