Narrow linewidth laser based on a sidewall grating active distributed Bragg reflector

Author:

Sheng Meng-Wei1,Hao You-Zeng1ORCID,Wang Wei1,Dong Zhong1,Yang Yue-De1ORCID,Xiao Jin-Long1ORCID,Huang Yong-Zhen1ORCID

Affiliation:

1. University of Chinese Academy of Sciences

Abstract

We demonstrated a narrow linewidth semiconductor laser based on a deep-etched sidewall grating active distributed Bragg reflector (SG-ADBR). The coupling coefficients and reflectance were numerically simulated for deep-etched fifth-order SG-ADBR, and a reflectance of 0.86 with a bandwidth of 1.04 nm was obtained by the finite element method for a 500-period SG-ADBR. Then the fifth-order SG-ADBR lasers were fabricated using projection i-line lithography processes. Single-mode lasing at 1537.9 nm was obtained with a high side-mode suppression ratio (SMSR) of 65 dB, and a continuous tuning range of 10.3 nm was verified with SMSRs greater than 53 dB. Furthermore, the frequency noise power spectral density was characterized, from which a Lorentzian linewidth of 288 kHz was obtained.

Funder

Strategic Priority Research Program, Chinese Academy of Sciences

National Natural Science Foundation of China

Publisher

Optica Publishing Group

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