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
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;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2013.2244566