Beyond conventional 3D ultrafast laser material processing
Beyond conventional 3D ultrafast laser material processing
Material processing with ultrafast lasers has attracted considerable interest due to a wide range of applications from laser surgery and integrated optics to optical data storage, 3D micro- and nano-structuring [1,2]. A decade ago it has been discovered that under certain irradiation conditions ordered sub-wavelength structures with features smaller than 20 nm can be formed in the volume of silica glass [3]. The effect of nanograting formation has attracted considerable interest with proposals of applications ranging from nanofluidics [4,5] to polarization control devices [6].
Kazansky, P.
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Beresna, M.
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Bellouard, Y.
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Kazansky, P.
a5d123ec-8ea8-408c-8963-4a6d921fd76c
Beresna, M.
a6dc062e-93c6-46a5-aeb3-8de332cdec7b
Bellouard, Y.
66b556cd-9d79-4d65-a1c8-3fcb470a1368
Kazansky, P., Beresna, M. and Bellouard, Y.
(2011)
Beyond conventional 3D ultrafast laser material processing.
European Conference on Lasers and Electro-Optics (CLEO/Europe), Munich, Germany.
22 - 26 May 2011.
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Conference or Workshop Item
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Abstract
Material processing with ultrafast lasers has attracted considerable interest due to a wide range of applications from laser surgery and integrated optics to optical data storage, 3D micro- and nano-structuring [1,2]. A decade ago it has been discovered that under certain irradiation conditions ordered sub-wavelength structures with features smaller than 20 nm can be formed in the volume of silica glass [3]. The effect of nanograting formation has attracted considerable interest with proposals of applications ranging from nanofluidics [4,5] to polarization control devices [6].
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e-pub ahead of print date: May 2011
Additional Information:
CM2.2
Venue - Dates:
European Conference on Lasers and Electro-Optics (CLEO/Europe), Munich, Germany, 2011-05-22 - 2011-05-26
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 341327
URI: http://eprints.soton.ac.uk/id/eprint/341327
PURE UUID: 6aa2f463-e2c2-433b-964f-ade9aa22f039
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Date deposited: 20 Jul 2012 08:07
Last modified: 14 Mar 2024 11:38
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Contributors
Author:
P. Kazansky
Author:
M. Beresna
Author:
Y. Bellouard
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