Freezing ultrashort light pulses by exciton-polariton interference in glass
Freezing ultrashort light pulses by exciton-polariton interference in glass
Self-assembled nanostructures with two characteristic periods, sub-wavelength along polarization and close to wavelength along propagation direction, are revealed in silica glass after femtosecond laser writing. The phenomenon is interpreted in terms of exciton-polariton crystal formation.
Beresna, M.
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Kazansky, P.G.
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Taylor, T.
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Kavokin, A.V.
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Beresna, M.
a6dc062e-93c6-46a5-aeb3-8de332cdec7b
Kazansky, P.G.
a5d123ec-8ea8-408c-8963-4a6d921fd76c
Taylor, T.
13f0de8a-163b-4979-bd74-036f11f940bb
Kavokin, A.V.
4721b861-7a7c-4ae2-b49c-61e5cd376238
Beresna, M., Kazansky, P.G., Taylor, T. and Kavokin, A.V.
(2011)
Freezing ultrashort light pulses by exciton-polariton interference in glass.
CLEO/QELS 2011, , Baltimore, United States.
01 - 06 May 2011.
Record type:
Conference or Workshop Item
(Paper)
Abstract
Self-assembled nanostructures with two characteristic periods, sub-wavelength along polarization and close to wavelength along propagation direction, are revealed in silica glass after femtosecond laser writing. The phenomenon is interpreted in terms of exciton-polariton crystal formation.
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e-pub ahead of print date: 2011
Venue - Dates:
CLEO/QELS 2011, , Baltimore, United States, 2011-05-01 - 2011-05-06
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 363169
URI: http://eprints.soton.ac.uk/id/eprint/363169
PURE UUID: f3461c65-ae84-42fa-a5d7-7140797b3662
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Date deposited: 20 Mar 2014 16:50
Last modified: 06 Feb 2023 18:18
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Contributors
Author:
M. Beresna
Author:
P.G. Kazansky
Author:
T. Taylor
Author:
A.V. Kavokin
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