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Quasi-continuous-wave birefringence-compensated single- and double-rod Nd:YAG lasers
Martin Ostermeyer1, Guido Klemz, Philipp Kubina
1Chair of Photonics, Institute of Physics, University of Potsdam, Am Neuen Palais 10, Postdam 14469, Germany. oster@rz.uni-potsdam.de
Abstract:
Compensation of thermally induced birefringence directed toward compensation of depolarization and bifocusing in laser rods is treated with simple beam transfer matrices. When we apply a 90-deg polarization-rotating element to a resonator, the radial and the tangential eigensolutions of the resonator change significantly. The effect of this alteration on the resonator's stability is investigated in detail. The outcome is used to design a single- and double-rod resonator resulting in 53 W with an M2 approximately 1.5 and 182 W of output power with an M2 approximately 1.2, respectively.