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1.047µm synchronously pumped optical parametric oscillator in bulk periodically poled LiNbO3

1.047µm synchronously pumped optical parametric oscillator in bulk periodically poled LiNbO3
1.047µm synchronously pumped optical parametric oscillator in bulk periodically poled LiNbO3
Picosecond pulses have been efficiently generated over the tuning range 1.670-2.806 µm via cw 1.047µm synchronously pumped optical parametric oscillation in periodically poled lithium niobate. Average signal and idler powers as high as 120mW and 90mW respectively have been generated with an overall slope efficiency of 61%. The corresponding pump depletion was 75% at 3 times above threshold.
Pruneri, V.
0e97eb94-b682-409f-a107-ae6b84763f02
Butterworth, S.D.
d2fdb456-6422-4d02-87e6-0b63a3fed706
Hanna, D.C.
3da5a5b4-71c2-4441-bb67-21f0d28a187d
Pruneri, V.
0e97eb94-b682-409f-a107-ae6b84763f02
Butterworth, S.D.
d2fdb456-6422-4d02-87e6-0b63a3fed706
Hanna, D.C.
3da5a5b4-71c2-4441-bb67-21f0d28a187d

Pruneri, V., Butterworth, S.D. and Hanna, D.C. (1996) 1.047µm synchronously pumped optical parametric oscillator in bulk periodically poled LiNbO3. Advanced Solid State Lasers (ASSL 96), San Francisco del Rincón, San Francisco, United States. 31 Jan - 03 Feb 1996.

Record type: Conference or Workshop Item (Paper)

Abstract

Picosecond pulses have been efficiently generated over the tuning range 1.670-2.806 µm via cw 1.047µm synchronously pumped optical parametric oscillation in periodically poled lithium niobate. Average signal and idler powers as high as 120mW and 90mW respectively have been generated with an overall slope efficiency of 61%. The corresponding pump depletion was 75% at 3 times above threshold.

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More information

Published date: February 1996
Venue - Dates: Advanced Solid State Lasers (ASSL 96), San Francisco del Rincón, San Francisco, United States, 1996-01-31 - 1996-02-03

Identifiers

Local EPrints ID: 76930
URI: http://eprints.soton.ac.uk/id/eprint/76930
PURE UUID: d2d9976e-e479-4e22-8201-931c5aea6df5

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Date deposited: 11 Mar 2010
Last modified: 13 Mar 2024 23:39

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Contributors

Author: V. Pruneri
Author: S.D. Butterworth
Author: D.C. Hanna

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