Published December 2010 | Version v1
Journal article

Steady-state ab initio laser theory: Generalizations and analytic results

  • 1. Department of Applied Physics, P. O. Box 208284, Yale University, New Haven, Connecticut 06520-8284 (United States)

Description

We improve the steady-state ab initio laser theory (SALT) of Tuereci et al. by expressing its fundamental self-consistent equation in a basis set of threshold constant flux states that contains the exact threshold lasing mode. For cavities with nonuniform index and/or nonuniform gain, the new basis set allows the steady-state lasing properties to be computed with much greater efficiency. This formulation of the SALT can be solved in the single-pole approximation, which gives the intensities and thresholds, including the effects of nonlinear hole-burning interactions to all orders, with negligible computational effort. The approximation yields a number of analytic predictions, including a 'gain-clamping' transition at which strong modal interactions suppress all higher modes. We show that the single-pole approximation agrees well with exact SALT calculations, particularly for high-Q cavities. Within this range of validity, it provides an extraordinarily efficient technique for modeling realistic and complex lasers.

Additional details

Publishing Information

Journal Title
Physical Review. A
Journal Volume
82
Journal Issue
6
Journal Page Range
p. 063824-063824.15
ISSN
1050-2947
CODEN
PLRAAN

INIS

Optional Information

Notes
(c) 2010 American Institute of Physics