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2013
Journal Article
Title

Thermal effects in high average power optical parametric amplifiers

Abstract
Optical parametric amplifiers (OPAs) have the reputation of being average power scalable due to the instantaneous nature of the parametric process (zero quantum defect). This Letter reveals serious challenges originating from thermal load in the nonlinear crystal caused by absorption. We investigate these thermal effects in high average power OPAs based on beta barium borate. Absorption of both pump and idler waves is identified to contribute significantly to heating of the nonlinear crystal. A temperature increase of up to 148 K with respect to the environment is observed and mechanical tensile stress up to 40 MPa is found, indicating a high risk of crystal fracture under such conditions. By restricting the idler to a wavelength range far from absorption bands and removing the crystal coating we reduce the peak temperature and the resulting temperature gradient significantly. Guidelines for further power scaling of OPAs and other nonlinear devices are given.
Author(s)
Rothhardt, Jan  
Demmler, Stefan
Hädrich, Steffen
Peschel, Thomas  
Limpert, Jens  
Tünnermann, Andreas  
Journal
Optics Letters  
DOI
10.1364/OL.38.000763
Language
English
Fraunhofer-Institut für Angewandte Optik und Feinmechanik IOF  
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