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Laser induced pressure pulse probe of charge distribution in thermally poled glass: Evidence of dipole polarisation?

Laser induced pressure pulse probe of charge distribution in thermally poled glass: Evidence of dipole polarisation?
Laser induced pressure pulse probe of charge distribution in thermally poled glass: Evidence of dipole polarisation?
For the first time charge distributions in thermally poled silica glass are mapped by using laser induced pressure pulse technique. The experimental results may be explained through postulating the formation of both real space charge layers and inside the depletion region.
Kazansky, P.G.
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Smith, A.R.
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Russell, P.St.J.
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Yang, G.M.
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Sessler, G.M.
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Kazansky, P.G.
a5d123ec-8ea8-408c-8963-4a6d921fd76c
Smith, A.R.
626fcce8-c707-4b9e-b968-32475d9d250f
Russell, P.St.J.
77db5e8d-8223-4806-ae60-a106619a022a
Yang, G.M.
8354f8e2-ad17-478d-a767-5e97844a55b7
Sessler, G.M.
4e5c9c0e-3922-4206-89fd-f22f63ffb2f3

Kazansky, P.G., Smith, A.R., Russell, P.St.J., Yang, G.M. and Sessler, G.M. (1995) Laser induced pressure pulse probe of charge distribution in thermally poled glass: Evidence of dipole polarisation? Photosensitivity and quadratic nonlinearity in glass waveguides: fundamentals and applications, Williamsburg, United States. 5 pp .

Record type: Conference or Workshop Item (Paper)

Abstract

For the first time charge distributions in thermally poled silica glass are mapped by using laser induced pressure pulse technique. The experimental results may be explained through postulating the formation of both real space charge layers and inside the depletion region.

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Published date: 1995
Venue - Dates: Photosensitivity and quadratic nonlinearity in glass waveguides: fundamentals and applications, Williamsburg, United States, 1995-01-01

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Local EPrints ID: 76986
URI: https://eprints.soton.ac.uk/id/eprint/76986
PURE UUID: e27a5252-f378-453c-abd7-5cb882b6702d

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Date deposited: 11 Mar 2010
Last modified: 12 Jun 2018 16:33

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