Title :
Correlation between laser pattern and local carrier distribution in VCSELs determined by microprobe electroluminescence
Author :
Dabbicco, M. ; Spagnolo, V. ; Troccoli, Mariano ; Marinelli, C. ; Scamarcio, G.
Author_Institution :
INFM, Politecnico di Bari, Italy
Abstract :
Summary form only given. Although VCSELs only radiate into one single longitudinal mode, their modal pattern is usually dominated by higher-order transverse modes, whose switching dynamics is primarily driven by locally inhomogeneous current and temperature distributions. Knowledge of the current density profile is fundamental for the estimate of the spatial variation of ohmic power losses and temperature distribution. Given the high optical field strength inside such microcavities, both linear and nonlinear variations of the refractive index, due to local variations of carrier concentration and temperature, strongly affect the mode emission profile. In order to address this critical issue we used a high spatial resolution microprobe electroluminescence measurement on the operating device. We show that this approach is successful to determine both majority and minority carrier local distribution in the proximity of the active region.
Keywords :
III-V semiconductors; aluminium compounds; carrier density; electroluminescence; gallium arsenide; minority carriers; quantum well lasers; surface emitting lasers; GaAs-AlGaAs; QW active region; VCSEL; current density profile; high spatial resolution; higher-order transverse modes; local carrier distribution; majority carrier; microprobe electroluminescence; minority carrier; modal pattern; mode emission profile; Current density; Laser modes; Nonlinear optical devices; Nonlinear optics; Optical losses; Optical refraction; Optical variables control; Stimulated emission; Temperature distribution; Vertical cavity surface emitting lasers;
Conference_Titel :
Lasers and Electro-Optics Europe, 2000. Conference Digest. 2000 Conference on
Conference_Location :
Nice
Print_ISBN :
0-7803-6319-1
DOI :
10.1109/CLEOE.2000.910110