Plasmonic tuning of effective phase transition temperature and electrical conductivity
Plasmonic tuning of effective phase transition temperature and electrical conductivity
Thermo-plasmonic engineering at the nanoscale can control material properties at the macroscopic scale. We demonstrate utilising plasmonic resonance to tune the effective phase transition temperature and electrical conductivity of vanadium oxide thin films.
Frame, James
828e40bf-f524-4d8e-a915-efb7a515048b
Kubo, Wakana
453b4e5c-4481-48b5-8f84-ca30ca2224e4
Fang, Xu
96b4b212-496b-4d68-82a4-06df70f94a86
13 May 2018
Frame, James
828e40bf-f524-4d8e-a915-efb7a515048b
Kubo, Wakana
453b4e5c-4481-48b5-8f84-ca30ca2224e4
Fang, Xu
96b4b212-496b-4d68-82a4-06df70f94a86
Frame, James, Kubo, Wakana and Fang, Xu
(2018)
Plasmonic tuning of effective phase transition temperature and electrical conductivity.
In Conference on Lasers and Electro-Optics (CLEO) 2018.
2 pp
.
(doi:10.1364/CLEO_AT.2018.JW2A.95).
Record type:
Conference or Workshop Item
(Paper)
Abstract
Thermo-plasmonic engineering at the nanoscale can control material properties at the macroscopic scale. We demonstrate utilising plasmonic resonance to tune the effective phase transition temperature and electrical conductivity of vanadium oxide thin films.
Text
Plasmonic Tuning of Effective Phase Transition Temperature and Electrical Conductivity_XF
- Accepted Manuscript
More information
Accepted/In Press date: 26 February 2018
Published date: 13 May 2018
Additional Information:
Poster
Venue - Dates:
2018 Conference on Lasers and Electro-Optics, Hong Kong Convention and Exhibition Centre, San Jose, United States, 2018-05-13 - 2018-05-18
Identifiers
Local EPrints ID: 418430
URI: http://eprints.soton.ac.uk/id/eprint/418430
PURE UUID: 7efca186-e18d-4f2e-9808-3629bdc2873c
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Date deposited: 08 Mar 2018 17:30
Last modified: 16 Mar 2024 06:17
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Contributors
Author:
James Frame
Author:
Wakana Kubo
Author:
Xu Fang
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