Influence of wavelength, linewidth, and temperature on second harmonic generation of a superfluorescent fiber source

Author:

He Junhong1ORCID,Ye Jun1ORCID,Ke Yanzhao1,Ma Xiaoya1ORCID,Zhang Yang1ORCID,Liang Junrui1,Xu Jiangming1ORCID,Leng Jinyong1,Zhou Pu1

Affiliation:

1. National University of Defense Technology

Abstract

Low-coherence tunable visible light sources have a wide range of applications in imaging, spectroscopy, medicine, and so on. Second harmonic generation (SHG) based on a superfluorescent fiber source (SFS) can produce high-brightness visible light while retaining most of the characteristics of superfluorescent sources, such as low coherence, low intensity noise and flexible tunability. However, due to the limitations in phase matching conditions, SHG based on SFS is difficult to reach an equilibrium between high efficiency and robustness of phase matching to temperature variation. In this paper, based on a spectral tunable SFS, we provide a comprehensive analysis, both experimental and theoretical, of the impact of wavelength, linewidth, and temperature on the output performance of SHG. Our findings indicate that broader linewidths adversely affect conversion efficiency, yet they enhance the capacity to withstand temperature variations and central wavelength detuning, which is an advantage that traditional SHG methods do not possess. This work may pave the way for utilizing low-coherence visible light in domains and extreme environments where robust output stability becomes imperative.

Funder

National Postdoctoral Program for Innovative Talents

National Natural Science Foundation of China

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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