Modeling and Simulation of Laser Systems II: 23-24 January 1991, Los Angeles, California, Volume 2Alvin D. Schnurr |
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Contents
LASER COUPLING | 23 |
NONLINEAR OPTICAL SYSTEMS | 61 |
ATMOSPHERIC PROPAGATION | 127 |
Copyright | |
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Common terms and phrases
aberrations absorbed absorption analysis aperture applied approximately array assumed band calculations cavity coefficient coupling crystal dependence described determined diameter diffraction direction distance distribution effect efficiency electron energy equation example experimental experiments field Figure focal frequency Fresnel number function gain Gaussian beam geometric given heat incident increase initial input integral intensity intracavity laser beam length lens light limited measured medium method mirror mode modulator nonlinear object obtained operation optical optical train output parameters particle performance phase physical plane polarization predicted present problem propagation pulse pump radiation range ratio reference reflection region relative removal resolution resonator respectively scale shown shows simulation Space spatial surface Table temperature term thermal threshold top-hat transverse turbulence values wave