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Title: High density, optically corrected, micro-channel cooled, v-groove monolithic laser diode array

Abstract

An optically corrected, micro-channel cooled, high density laser diode array achieves stacking pitches to 33 bars/cm by mounting laser diodes into V-shaped grooves. This design will deliver > 4kW/cm{sup 2} of directional pulsed laser power. This optically corrected, micro-channel cooled, high density laser is usable in all solid state laser systems which require efficient, directional, narrow bandwidth, high optical power density pump sources. 13 figs.

Inventors:
Issue Date:
Research Org.:
Univ. of California (United States)
Sponsoring Org.:
USDOE, Washington, DC (United States)
OSTI Identifier:
675847
Patent Number(s):
5828683
Application Number:
PAN: 8-845,250
Assignee:
Univ. of California, Oakland, CA (United States)
DOE Contract Number:  
W-7405-ENG-48
Resource Type:
Patent
Resource Relation:
Other Information: PBD: 27 Oct 1998
Country of Publication:
United States
Language:
English
Subject:
42 ENGINEERING NOT INCLUDED IN OTHER CATEGORIES; SEMICONDUCTOR LASERS; DESIGN; POWER; COOLING; DIODE-PUMPED SOLID STATE LASERS

Citation Formats

Freitas, B L. High density, optically corrected, micro-channel cooled, v-groove monolithic laser diode array. United States: N. p., 1998. Web.
Freitas, B L. High density, optically corrected, micro-channel cooled, v-groove monolithic laser diode array. United States.
Freitas, B L. Tue . "High density, optically corrected, micro-channel cooled, v-groove monolithic laser diode array". United States.
@article{osti_675847,
title = {High density, optically corrected, micro-channel cooled, v-groove monolithic laser diode array},
author = {Freitas, B L},
abstractNote = {An optically corrected, micro-channel cooled, high density laser diode array achieves stacking pitches to 33 bars/cm by mounting laser diodes into V-shaped grooves. This design will deliver > 4kW/cm{sup 2} of directional pulsed laser power. This optically corrected, micro-channel cooled, high density laser is usable in all solid state laser systems which require efficient, directional, narrow bandwidth, high optical power density pump sources. 13 figs.},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {1998},
month = {10}
}