Title :
Theory of the optimally coupled Q-switched laser
Author_Institution :
NASA Goddard Space Flight Center, Greenbelt, MD, USA
fDate :
2/1/1989 12:00:00 AM
Abstract :
The general equations describing Q-switched laser operation are transcendental in nature and require numerical solutions, which greatly complicates the optimization of real devices. Here, it is shown that, using the mathematical technique of Lagrange multipliers, one can derive simple analytic expressions for all of the key parameters of the optimally coupled laser, i.e. one which uses an optimum reflector to obtain maximum laser efficiency for a given pump level. These parameters can all be expressed as functions of a single dimensionless variable z, defined as the ratio of the unsaturated small-signal gain to the dissipative (nonuseful) optical loss, multiplied by a few simple constants. Laser design tradeoff studies and performance projections can be accomplished quickly with the help of several graphs and a simple hand calculator. Sample calculations for a high-grain Nd:YAG and a low-gain alexandrite laser are presented as illustrations of the technique
Keywords :
Q-switching; laser theory; solid lasers; Lagrange multipliers; Nd:YAG; YAG:Nd; YAl5O12:Nd; alexandrite laser; coupled Q-switched laser; laser efficiency; optical loss; transcendental equations; Equations; Lagrangian functions; Laser theory; Optical coupling; Optical design; Optical losses; Optical pulses; Optical resonators; Power lasers; Pump lasers;
Journal_Title :
Quantum Electronics, IEEE Journal of