Av. Mushenkov et al., DYNAMICS OF THE OPERATION OF A FAST-FLOW LASER WITH INHOMOGENEOUS EXCITATION OF THE ACTIVE MEDIUM IN AN UNSTABLE CAVITY, Quantum electronics, 27(5), 1997, pp. 419-423
Numerical simulation is used to investigate the influence of spatially
inhomogeneous steady-state pumping on the dynamics of operation of a
laser with fast crossflow of the active medium through an unstable cav
ity, It is shown that, depending on the distribution of the pumping ra
te inside the cavity, the pumping may stabilise cw lasing or may lead
to its instability, The appearance of an instability is associated wit
h the formation, under the action of inhomogeneous pumping, of conside
rable transverse gradients of the steady-state gain and field intensit
y distributions. If the spatial pumping profile is characterised by a
steep fall of the excitation rate near the optic axis of the cavity, t
he calculations predict-depending on the system parameters-not only cw
lasing, but also various self-pulsing regimes and chaotic lasing.