Research on Narrow Linewidth External Cavity Semiconductor Lasers

Author:

Ding Keke,Ma Yuhang,Wei Long,Li XuanORCID,Shi Junce,Li Zaijin,Qu Yi,Li Lin,Qiao ZhongliangORCID,Liu Guojun,Zeng Lina

Abstract

Narrow linewidth external cavity semiconductor lasers (NLECSLs) have many important applications, such as spectroscopy, metrology, biomedicine, holography, space laser communication, laser lidar and coherent detection, etc. Due to their high coherence, low phase-frequency noise, high monochromaticity and wide wavelength tuning potential, NLECSLs have attracted much attention for their merits. In this paper, three main device structures for achieving NLECSLs are reviewed and compared in detail, such as free space bulk diffraction grating external cavity structure, waveguide external cavity structure and confocal Fabry–Perot cavity structure of NLECSLs. The Littrow structure and Littman structure of NLECSLs are introduced from the free space bulk diffraction grating external cavity structure of NLECSLs. The fiber Bragg grating external cavity structure and silicon based waveguide external cavity structure of NLECSLs are introduced from the waveguide external cavity structure of NLECSLs. The results show that the confocal Fabry–Perot cavity structure of NLECSLs is a potential way to realize a lower than tens Hz narrow linewidth laser output.

Funder

specific research fund for Innovation Platform for Academicians of Hainan Province

Publisher

MDPI AG

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science,General Chemical Engineering

Reference52 articles.

1. External-cavity semiconductor laser with 1000 GHz continuous piezoelectric tuning range

2. Single frequency and tunable laser diodes

3. Narrow-linewidth laser diode with compact optical-feedback system;Aoyama;Proceedings of the Microwave Photonics (MWP) and the 2014 9th Asia-Pacific Microwave Photonics Conference (APMP) 2014 International Topical Meeting,2014

4. Narrow linewidth discrete mode laser diodes at 1550 nm;O’Carroll,2012

5. SMALL‐SIGNAL AMPLIFICATION IN GaAs LASERS

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