Neodymium-diffused tunable Y-branch waveguide laser in LiNbO3 operating at room temperature
Neodymium-diffused tunable Y-branch waveguide laser in LiNbO3 operating at room temperature
Rare-earth-doped waveguide optical lasers and amplifiers have received considerable attention in recent years, both in fibre form and as channel waveguides on planar substrates. Channel waveguide geometries lend themselves ideally for applications in active integrated circuits, with the potential for photolithographic definition of complex-cavity devices and monolithically integrated modulators for tuning, line-narrowing, Q-switching and mode-locking.
Amin, J.
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Hempstead, M.
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Román, J.E.
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Wilkinson, J.S.
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Amin, J.
25fe4de1-d795-495c-99e8-7fbb8ce06818
Hempstead, M.
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Román, J.E.
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Wilkinson, J.S.
73483cf3-d9f2-4688-9b09-1c84257884ca
Amin, J., Hempstead, M., Román, J.E. and Wilkinson, J.S.
(1994)
Neodymium-diffused tunable Y-branch waveguide laser in LiNbO3 operating at room temperature.
Union of Radio Science (URSI) National Radio Science Conference (NRSC) '94, Liverpool, United Kingdom.
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Abstract
Rare-earth-doped waveguide optical lasers and amplifiers have received considerable attention in recent years, both in fibre form and as channel waveguides on planar substrates. Channel waveguide geometries lend themselves ideally for applications in active integrated circuits, with the potential for photolithographic definition of complex-cavity devices and monolithically integrated modulators for tuning, line-narrowing, Q-switching and mode-locking.
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e-pub ahead of print date: July 1994
Venue - Dates:
Union of Radio Science (URSI) National Radio Science Conference (NRSC) '94, Liverpool, United Kingdom, 1994-07-01
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Local EPrints ID: 77126
URI: http://eprints.soton.ac.uk/id/eprint/77126
PURE UUID: 461fb1d5-9528-4744-9baf-27b11ac3dfa3
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Date deposited: 11 Mar 2010
Last modified: 14 Mar 2024 02:32
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Contributors
Author:
J. Amin
Author:
M. Hempstead
Author:
J.E. Román
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