Paper
6 May 2009 Highly reliable high-efficiency wavelength-stabilized 885 nm diode laser bars
Paul Leisher, Ling Bao, Hua Huang, Jun Wang, Mark DeVito, Weimin Dong, Mike Grimshaw, David Balsley, Rob Martinsen, Mark DeFranza, Steve Patterson
Author Affiliations +
Abstract
We report on the progress of highly-reliable, high-efficiency 885-nm diode laser bar arrays. Conduction-cooled hardsoldered bars rated to 60W and 57% conversion efficiency demonstrate >30,000 device hours under 1-sec on, 1-sec off hard pulse conditions failure-free. Microchannel-cooled bars rated to 100W and 62% efficiency demonstrate >100,000 accelerated device hours failure-free. Integrated volume Bragg grating fast axis lenses provide wavelength stabilization at low cost. Vertically stacked arrays (seven bars each) of such configuration are demonstrated with a 0.8 nm FWHM spectral width and rated to 700W, 53% conversion efficiency.
© (2009) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Paul Leisher, Ling Bao, Hua Huang, Jun Wang, Mark DeVito, Weimin Dong, Mike Grimshaw, David Balsley, Rob Martinsen, Mark DeFranza, and Steve Patterson "Highly reliable high-efficiency wavelength-stabilized 885 nm diode laser bars", Proc. SPIE 7325, Laser Technology for Defense and Security V, 73250R (6 May 2009); https://doi.org/10.1117/12.820872
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Cited by 1 scholarly publication.
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KEYWORDS
Semiconductor lasers

Fiber Bragg gratings

Nd:YAG lasers

Collimation

Diodes

Heatsinks

Laser applications

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