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Characterising energy transfer upconversion in Nd:YVO4 at elevated temperatures

Characterising energy transfer upconversion in Nd:YVO4 at elevated temperatures
Characterising energy transfer upconversion in Nd:YVO4 at elevated temperatures
Energy Transfer Upconversion and 4F3/2 energy level absorption cross section
are measured in Nd:YVO4 at temperatures ranging from 300 K to 450 K. The ETU coefficient decreases from (34.5±6.5) x 10-17 cm3/s to (3.0±2.0) x 10-17 cm3/s.
Upconversion, Lasers, Neodymium, Absorption
paper JM5A.9
OSA
Cante, Silvia
153acbb4-d6d1-4f3e-ada7-1be8b5b94c8f
Beecher, Stephen J.
b3664adc-d6b5-4a5a-a09a-8e1415c6d3f5
Mackenzie, Jacob
1d82c826-fdbf-425b-ac04-be43ccf12008
Cante, Silvia
153acbb4-d6d1-4f3e-ada7-1be8b5b94c8f
Beecher, Stephen J.
b3664adc-d6b5-4a5a-a09a-8e1415c6d3f5
Mackenzie, Jacob
1d82c826-fdbf-425b-ac04-be43ccf12008

Cante, Silvia, Beecher, Stephen J. and Mackenzie, Jacob (2017) Characterising energy transfer upconversion in Nd:YVO4 at elevated temperatures. In Laser Congress 2017 (ASSL, LAC). OSA. 3 pp . (doi:10.1364/ASSL.2017.JM5A.9).

Record type: Conference or Workshop Item (Paper)

Abstract

Energy Transfer Upconversion and 4F3/2 energy level absorption cross section
are measured in Nd:YVO4 at temperatures ranging from 300 K to 450 K. The ETU coefficient decreases from (34.5±6.5) x 10-17 cm3/s to (3.0±2.0) x 10-17 cm3/s.

Text
ETU_NdYVO4_submitted - Author's Original
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More information

Accepted/In Press date: 17 July 2017
e-pub ahead of print date: 2017
Venue - Dates: OSA Laser Congress: Advanced Solid State Lasers 2017, Convention Center Nagoya, Nagoya, Japan, 2017-10-01 - 2017-10-05
Keywords: Upconversion, Lasers, Neodymium, Absorption

Identifiers

Local EPrints ID: 413255
URI: http://eprints.soton.ac.uk/id/eprint/413255
PURE UUID: ac4c3f30-836e-4769-8c37-000c3477a972
ORCID for Silvia Cante: ORCID iD orcid.org/0000-0002-5981-0855
ORCID for Jacob Mackenzie: ORCID iD orcid.org/0000-0002-3355-6051

Catalogue record

Date deposited: 18 Aug 2017 16:31
Last modified: 17 Mar 2024 05:28

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Contributors

Author: Silvia Cante ORCID iD
Author: Stephen J. Beecher
Author: Jacob Mackenzie ORCID iD

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