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Diode-pumped laser altimeterTEM(sub 00)-mode output energies up to 22.5 mJ with 23 percent slope efficiencies were generated at 1.064 microns in a diode-laser pumped Nd:YAG laser using a transverse-pumping geometry. 1.32-micron performance was equally impressive at 10.2 mJ output energy with 15 percent slope efficiency. The same pumping geometry was successfully carried forward to several complex Q-switched laser resonator designs with no noticeable degradation of beam quality. Output beam profiles were consistently shown to have greater than 90 percent correlation with the ideal TEM(sub 00)-order Gaussian profile. A comparison study on pulse-reflection-mode (PRM), pulse-transmission-mode (PTM), and passive Q-switching techniques was undertaken. The PRM Q-switched laser generated 8.3 mJ pulses with durations as short as 10 ns. The PTM Q-switch laser generated 5 mJ pulses with durations as short as 5 ns. The passively Q-switched laser generated 5 mJ pulses with durations as short as 2.4 ns. Frequency doubling of both 1.064 microns and 1.32 microns with conversion efficiencies of 56 percent in lithium triborate and 10 percent in rubidium titanyl arsenate, respectively, was shown. Sum-frequency generation of the 1.064 microns and 1.32 microns radiations was demonstrated in KTP to generate 1.1 mJ of 0.589 micron output with 11.5 percent conversion efficiency.
Document ID
19930017964
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Welford, D.
(Schwartz Electro-Optics, Inc. Concord, MA, United States)
Isyanova, Y.
(Schwartz Electro-Optics, Inc. Concord, MA, United States)
Date Acquired
September 6, 2013
Publication Date
June 1, 1993
Subject Category
Lasers And Masers
Report/Patent Number
NASA-CR-193166
NAS 1.26:193166
Report Number: NASA-CR-193166
Report Number: NAS 1.26:193166
Accession Number
93N27153
Funding Number(s)
CONTRACT_GRANT: NAS5-30882
CONTRACT_GRANT: SBIR-08.02-2299
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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