DocumentCode
37384
Title
Mode Analysis for Unidirectional Emission AlGaInAs/InP Octagonal Resonator Microlasers
Author
Ling-Xiu Zou ; Xiao-Meng Lv ; Yong-Zhen Huang ; Heng Long ; Jin-Long Xiao ; Qi-Feng Yao ; Jian-Dong Lin ; Yun Du
Author_Institution
State Key Lab. on Integrated Optoelectron., Inst. of Semicond., Beijing, China
Volume
19
Issue
4
fYear
2013
fDate
July-Aug. 2013
Firstpage
1501808
Lastpage
1501808
Abstract
We investigate mode characteristics for octagonal resonator microlasers directly connecting an output waveguide. The threshold current of 8 mA at 286 K and single-transverse-mode operation are realized for an octagonal resonator microlaser with a side length of 10.8 μm and a 2-μm-wide vertex output waveguide. The laser spectra of multiple longitudinal modes with mode wavelength intervals of 7-8 nm are observed accompanied with three weak, higher order transverse modes. Furthermore, blueshift of mode wavelength versus the injection current around the threshold current and the far-field patterns are measured and discussed. In addition, the mode characteristics of the octagonal microresonators are simulated by the two-dimensional finite-difference time-domain technique. Two sets of high-Q longitudinal modes are observed experimentally and numerically, for the octagonal resonators with the output waveguide connected to the vertex and the midpoint of one side of the resonators, respectively.
Keywords
aluminium compounds; finite difference time-domain analysis; gallium compounds; indium compounds; micro-optics; optical resonators; optical waveguides; AlGaInAs-InP; AlGaInAs-InP octagonal resonator microlasers; far-field patterns; high-Q longitudinal modes; injection current; laser spectra; mode analysis; mode wavelength intervals; multiple longitudinal modes; octagonal microresonators; octagonal resonators; optical waveguide; output waveguide; single-transverse-mode operation; temperature 286 K; threshold current; transverse modes; two-dimensional finite-difference time-domain technique; unidirectional emission; Current measurement; Optical resonators; Optical waveguides; Power generation; Q factor; Temperature measurement; Waveguide lasers; Finite-difference time-domain (FDTD) methods; optical resonator; semiconductor microlaser;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2013.2244566
Filename
6425395
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