Title :
Generic representation of active cavity VCSEL eigenmodes by optimized waist Gauss-Laguerre modes
Author :
Riyopoulos, Spilios A. ; Dialetis, D. ; Liu, J. ; Riely, B.
Author_Institution :
Sci. Applications Int. Corp., McLean, VA, USA
Abstract :
Gain-guided eigenmodes in open VCSEL cavities are constructed by superposition of paraxial (i.e., Gauss-Laguerre) (GL) modes, employing the effective cavity hard mirror equivalent for the DBRs. A generic round-trip matrix is obtained analytically for simple gain profiles, including finite mirror diameter losses, diffraction spreading and aperture scattering effects. Diagonalization yields the full range of stable, unstable, and steady-state complex eigenmodes and gain eigenvalues. More importantly, it is demonstrated that in cases of interest the lower order cavity eigenmodes can be approximated by pure GL modes with optimum waist size prescribed through a variational principle. A simple analytic relation is thus obtained for the mode waist for a variety of laterally open cavities. The theory is confirmed by comparison with experimental results. The GL eigenmode properties account for wavelength blue-shifting, increasing density threshold current and increasing differentiation in modal losses with decreasing current aperture. They also yield the correct aperture placement effects in the cavity standing wave. Diffraction and scattering losses are shown to dominate over mirror losses at small cavity apertures
Keywords :
distributed Bragg reflector lasers; laser cavity resonators; laser mirrors; laser modes; optical losses; surface emitting lasers; variational techniques; Gauss-Laguerre modes; active cavity VCSEL eigenmodes; aperture placement; aperture scattering effects; cavity standing wave; decreasing current aperture; differentiation; diffraction and scattering losses; effective cavity hard mirror; finite mirror diameter losses; gain eigenvalues; gain-guided eigenmodes; generic representation; generic round-trip matrix; increasing density threshold current; laterally open cavities; lower order cavity eigenmodes; mirror losses; modal losses; open VCSEL cavities; optimized waist Gauss-Laguerre modes; optimum waist size; scattering losses; simple gain profiles; small cavity apertures; steady-state complex eigenmodes; variational principle; wavelength blue-shifting; Apertures; Diffraction; Distributed Bragg reflectors; Gaussian processes; Laser modes; Mirrors; Scattering; Semiconductor lasers; Surface emitting lasers; Vertical cavity surface emitting lasers;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/2944.954145