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Gill, D.H.; Newnam, B.E.; McLeod, J.
Los Alamos Scientific Lab., N.Mex. (USA)1977
Los Alamos Scientific Lab., N.Mex. (USA)1977
AbstractAbstract
[en] The damage resistance of multilayer dielectric laser reflectors has been increased by using non-quarter-wave thicknesses for the top few layers. These designs minimize the standing-wave electric field in the high-index layers, which are generally the weaker layers. Algebraic equations have been derived for optimum film thicknesses and for the resulting peak electric fields. Five sets of reflectors for 532 and 1064 nm were fabricated according to these designs by two vendors using two different material combinations. Each set contained one reflector of standard all-quarter-wave design and three reflectors each with a different number of modified layers. The damage thresholds of the modified designs were found to be higher than the all-quarter-wave designs, in some cases by a factor greater than 2. The damage thresholds have been analyzed and explained in terms of standing-wave electric field patterns
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1977; 12 p; Symposium on optical materials for high power lasers; Boulder, CO, USA; 4 - 6 Oct 1977; CONF-771061--1; Available from NTIS., PC A02/MF A01
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