High second-order non-linearities in poled silica fibres
High second-order non-linearities in poled silica fibres
Effective quadratic nonlinearities as high as 0.2 pm/V are obtained for the first time in poled germanosilicate fibres. This value is ~200 times higher than previously reported in fibres. The presence of Ge is found to enhance the efficacy of both thermal (in combination with OH doping) and electron beam poling in silica.
Kazansky, P.G.
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Dong, L.
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Hua, P.
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Russell, P.St.J.
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1994
Kazansky, P.G.
a5d123ec-8ea8-408c-8963-4a6d921fd76c
Dong, L.
4a30a247-d676-42ef-aaf4-061579d6d64e
Hua, P.
8eb52f09-b5f2-4709-a9bf-ed640d227d16
Russell, P.St.J.
77db5e8d-8223-4806-ae60-a106619a022a
Kazansky, P.G., Dong, L., Hua, P. and Russell, P.St.J.
(1994)
High second-order non-linearities in poled silica fibres.
Conference on Lasers and Electro-Optics (CLEO), Anaheim, United States.
08 - 12 May 1994.
Record type:
Conference or Workshop Item
(Paper)
Abstract
Effective quadratic nonlinearities as high as 0.2 pm/V are obtained for the first time in poled germanosilicate fibres. This value is ~200 times higher than previously reported in fibres. The presence of Ge is found to enhance the efficacy of both thermal (in combination with OH doping) and electron beam poling in silica.
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Published date: 1994
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Venue - Dates:
Conference on Lasers and Electro-Optics (CLEO), Anaheim, United States, 1994-05-08 - 1994-05-12
Identifiers
Local EPrints ID: 77158
URI: http://eprints.soton.ac.uk/id/eprint/77158
PURE UUID: 149438be-2022-4d95-8e4c-38be2404e53d
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Date deposited: 11 Mar 2010
Last modified: 13 Mar 2024 23:45
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Contributors
Author:
P.G. Kazansky
Author:
L. Dong
Author:
P. Hua
Author:
P.St.J. Russell
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