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Nonlinear lensing in an unpumped antiresonant semiconductor disk laser gain structure

Nonlinear lensing in an unpumped antiresonant semiconductor disk laser gain structure
Nonlinear lensing in an unpumped antiresonant semiconductor disk laser gain structure
We characterize the nonlinear lens in an antiresonant 11 quantum well InGaAs/GaAsP semiconductor disk laser gain structure designed for operation at 1035 nm using a reflection-type z-scan technique. We probe at a wavelength of 1035 nm and with a sub-picosecond pulse duration. The measured n2 was within the range of -5.6 × 10-13 cm2/W < n2 < -3.1 × 10-13 cm2/W.
1041-1135
1395 - 1398
Shaw, Edward A.
848b2af5-cc7c-4bd4-9f0f-e8ff86ac7cc6
Quarterman, Adrian H.
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Turnbull, Andrew
ece8f640-ed54-462e-a45b-3dc3963c5f86
Chen-Sverre, Theo
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Head, Christopher Robin
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Tropper, Anne
f3505426-e0d5-4e91-aed3-aecdb44b393c
Wilcox, Keith
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Shaw, Edward A.
848b2af5-cc7c-4bd4-9f0f-e8ff86ac7cc6
Quarterman, Adrian H.
1c79380a-ea21-4ff2-9aeb-62b1bfc3de31
Turnbull, Andrew
ece8f640-ed54-462e-a45b-3dc3963c5f86
Chen-Sverre, Theo
f515a9e9-da44-4af8-b444-8e1daa93222d
Head, Christopher Robin
a32d57ad-9449-4d10-9eb0-ce8c95a1c0e0
Tropper, Anne
f3505426-e0d5-4e91-aed3-aecdb44b393c
Wilcox, Keith
49a6297a-03c0-4290-a42d-43387f273346

Shaw, Edward A., Quarterman, Adrian H., Turnbull, Andrew, Chen-Sverre, Theo, Head, Christopher Robin, Tropper, Anne and Wilcox, Keith (2016) Nonlinear lensing in an unpumped antiresonant semiconductor disk laser gain structure. IEEE Photonics Technology Letters, 28 (13), 1395 - 1398. (doi:10.1109/LPT.2016.2543302).

Record type: Article

Abstract

We characterize the nonlinear lens in an antiresonant 11 quantum well InGaAs/GaAsP semiconductor disk laser gain structure designed for operation at 1035 nm using a reflection-type z-scan technique. We probe at a wavelength of 1035 nm and with a sub-picosecond pulse duration. The measured n2 was within the range of -5.6 × 10-13 cm2/W < n2 < -3.1 × 10-13 cm2/W.

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Accepted/In Press date: 10 March 2016
Published date: 24 March 2016
Additional Information: This is published version, however it is open access. This paper will be used for REF benchmarking in September.

Identifiers

Local EPrints ID: 415127
URI: http://eprints.soton.ac.uk/id/eprint/415127
ISSN: 1041-1135
PURE UUID: 43fdad7b-a9fa-431f-8979-a2ee82797a8e

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Date deposited: 31 Oct 2017 17:31
Last modified: 15 Mar 2024 15:28

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Contributors

Author: Edward A. Shaw
Author: Adrian H. Quarterman
Author: Andrew Turnbull
Author: Theo Chen-Sverre
Author: Christopher Robin Head
Author: Anne Tropper
Author: Keith Wilcox

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