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Novel fabrication technique for planar glass waveguides

Novel fabrication technique for planar glass waveguides
Novel fabrication technique for planar glass waveguides
A novel technique has been developed for the deposition of low-loss planar glass waveguides by directly spin coating from the liquid, thus overcoming the problems of reproducing glass stoichiometry when depositing from the vapour.
8489900140
449-450
IEEE
Harwood, D.W.J.
1103aa43-a21d-41a1-aa9c-d180fb4ef95d
Taylor, E.R.
d9a73a87-6abd-4a1e-a462-84549c667d19
Brown, C.T.A.
7a30f6bb-ac13-457c-9c14-c6bbc12156c4
Shepherd, D.P.
9fdd51c4-39d6-41b3-9021-4c033c2f4ead
Payne, D.N.
4f592b24-707f-456e-b2c6-8a6f750e296d
Harwood, D.W.J.
1103aa43-a21d-41a1-aa9c-d180fb4ef95d
Taylor, E.R.
d9a73a87-6abd-4a1e-a462-84549c667d19
Brown, C.T.A.
7a30f6bb-ac13-457c-9c14-c6bbc12156c4
Shepherd, D.P.
9fdd51c4-39d6-41b3-9021-4c033c2f4ead
Payne, D.N.
4f592b24-707f-456e-b2c6-8a6f750e296d

Harwood, D.W.J., Taylor, E.R., Brown, C.T.A., Shepherd, D.P. and Payne, D.N. (1998) Novel fabrication technique for planar glass waveguides. In 24th European Conference on Optical Communication, 1998. IEEE. pp. 449-450 . (doi:10.1109/ECOC.1998.732652).

Record type: Conference or Workshop Item (Paper)

Abstract

A novel technique has been developed for the deposition of low-loss planar glass waveguides by directly spin coating from the liquid, thus overcoming the problems of reproducing glass stoichiometry when depositing from the vapour.

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More information

Published date: 1998
Venue - Dates: 24th European Conference on Optical Communication (ECOC '98), Madrid, Spain, 1998-09-20 - 1998-09-24

Identifiers

Local EPrints ID: 76635
URI: http://eprints.soton.ac.uk/id/eprint/76635
ISBN: 8489900140
PURE UUID: aaa99206-84bb-427c-8b11-492d233abd62
ORCID for D.P. Shepherd: ORCID iD orcid.org/0000-0002-4561-8184

Catalogue record

Date deposited: 11 Mar 2010
Last modified: 14 Mar 2024 02:34

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Contributors

Author: D.W.J. Harwood
Author: E.R. Taylor
Author: C.T.A. Brown
Author: D.P. Shepherd ORCID iD
Author: D.N. Payne

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