Temperature-dependent analytical thermal model for end-pumped solid-state lasers
Temperature-dependent analytical thermal model for end-pumped solid-state lasers
Analytical expressions for the temperature distribution and thermal-lens power in end-pumped solid-state lasers are reported. Enabled by including a temperature-dependent thermal conductivity, applicable from cryogenic to elevated temperatures, these provide insightful understandings for practical systems.
thermal effects, Laser theory, Laser materials
Cini, Luigi
48bfe3fc-42a3-4a26-827a-8f8218b49289
Bailey, Wendell O.S.
c356b2e3-a783-4b4c-8c7b-521696d3b37c
Yang, Yifeng
4cac858a-e0c0-4174-a839-05ca394fc51f
Mackenzie, Jacob I.
1d82c826-fdbf-425b-ac04-be43ccf12008
Cini, Luigi
48bfe3fc-42a3-4a26-827a-8f8218b49289
Bailey, Wendell O.S.
c356b2e3-a783-4b4c-8c7b-521696d3b37c
Yang, Yifeng
4cac858a-e0c0-4174-a839-05ca394fc51f
Mackenzie, Jacob I.
1d82c826-fdbf-425b-ac04-be43ccf12008
Cini, Luigi, Bailey, Wendell O.S., Yang, Yifeng and Mackenzie, Jacob I.
(2017)
Temperature-dependent analytical thermal model for end-pumped solid-state lasers.
OSA Laser Congress: Advanced Solid State Lasers 2017, Convention Center Nagoya, Nagoya, Japan.
01 - 05 Oct 2017.
3 pp
.
(In Press)
Record type:
Conference or Workshop Item
(Poster)
Abstract
Analytical expressions for the temperature distribution and thermal-lens power in end-pumped solid-state lasers are reported. Enabled by including a temperature-dependent thermal conductivity, applicable from cryogenic to elevated temperatures, these provide insightful understandings for practical systems.
Text
CiniASSL2017final
- Author's Original
More information
Accepted/In Press date: 17 July 2017
Venue - Dates:
OSA Laser Congress: Advanced Solid State Lasers 2017, Convention Center Nagoya, Nagoya, Japan, 2017-10-01 - 2017-10-05
Keywords:
thermal effects, Laser theory, Laser materials
Identifiers
Local EPrints ID: 413257
URI: http://eprints.soton.ac.uk/id/eprint/413257
PURE UUID: 089fb441-85cd-4e94-9096-9bf61fbe9585
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Date deposited: 18 Aug 2017 16:31
Last modified: 16 Mar 2024 05:39
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Contributors
Author:
Luigi Cini
Author:
Jacob I. Mackenzie
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