DocumentCode :
13737
Title :
Mode Characteristics of Unidirectional Emission AlGaInAs/InP Square Resonator Microlasers
Author :
Heng Long ; Yong-Zhen Huang ; Yue-De Yang ; Ling-Xiu Zou ; Xiao-Meng Lv ; Bo-Wen Liu ; Jin-Long Xiao ; Yun Du
Author_Institution :
State Key Lab. on Integrated Optoelectron., Inst. of Semicond., Beijing, China
Volume :
50
Issue :
12
fYear :
2014
fDate :
Dec. 2014
Firstpage :
981
Lastpage :
989
Abstract :
Mode characteristics of AlGaInAs/InP square resonator microlasers laterally confined by a bisbenzocyclobutene layer, with an output waveguide connected to one vertex or the midpoint of one side, are investigated numerically and experimentally. Numerical simulation results indicate that the square resonator with the midpoint output waveguide has a better single-mode property, but a lower mode Q-factor than that with the vertex output waveguide. For a 20-μm-side-length square microlaser with a 1.5-μm-wide vertex output waveguide, lasing spectra with multiple transverse modes are observed with the mode wavelength intervals agreeing with the 2-D-finite difference time domain simulation results. In contrast, single-mode operation with a side-mode suppression ratio of 42 dB is obtained for a 20-μm-side-length square microlaser with a 1.5-μm-wide midpoint output waveguide. The results indicate that output waveguide can result in a mode selection in addition to realizing unidirectional emission.
Keywords :
III-V semiconductors; Q-factor; aluminium compounds; finite difference time-domain analysis; gallium compounds; indium compounds; laser cavity resonators; laser modes; micro-optics; optical waveguides; semiconductor lasers; 2-D-finite difference time domain simulation; AlGaInAs-InP; Q-factor; bisbenzocyclobutene layer; mode characteristics; output waveguide; side-mode suppression ratio; single-mode operation; size 1.5 mum; size 20 mum; square resonator microlasers; transverse modes; unidirectional emission; vertex output waveguide; Couplings; Finite difference methods; Fourier transforms; Optical resonators; Optical waveguides; Q-factor; Time-domain analysis; Fourier transform; Microlaser; field distribution; square resonator;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2014.2365201
Filename :
6937065
Link To Document :
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