DocumentCode :
1100985
Title :
Validation of model of external-cavity semiconductor laser and extrapolation from five-element to multielement fiber-coupled high-power laser
Author :
Rediker, Robert H. ; Corcoran, C. ; Pang, Lily Y. ; Liew, So Kuen
Author_Institution :
MIT, Lincoln Lab., Cambridge, MA, USA
Volume :
25
Issue :
6
fYear :
1989
fDate :
6/1/1989 12:00:00 AM
Firstpage :
1547
Lastpage :
1551
Abstract :
The model used to explain the operation of an external cavity containing five discrete antireflection (AR)-coated semiconductor lasers and a spatial filter to assure coherent output from the cavity has been experimentally validated. This model predicts that the external cavity will operate as a coherent source with a multitude of discrete individual lasers and/or monolithic arrays. Control by an external cavity of the series combination of an optical fiber and an AR-coated semiconductor laser has previously been demonstrated. For systems requiring high average-power operation, distributed AR-coated lasers that are fiber-coupled into an external cavity provide a potential alternative to broad-area lasers or monolithic laser arrays with high density of power dissipation which must use thermoelectric or other cooling. An annular input to the external cavity from an array of fibers is proposed for high beam quality
Keywords :
antireflection coatings; laser cavity resonators; laser theory; optical couplers; optical fibres; semiconductor junction lasers; spatial filters; annular input; antireflection coated semiconductor lasers; coherent output; cooling; external cavity; external-cavity semiconductor laser; monolithic arrays; multielement fiber-coupled high-power laser; optical fiber; power dissipation; spatial filter; thermoelectric cooling; Fiber lasers; Laser modes; Optical arrays; Optical control; Optical fibers; Power lasers; Predictive models; Semiconductor laser arrays; Semiconductor lasers; Spatial filters;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/3.29291
Filename :
29291
Link To Document :
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