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Nanograting orientation influence on stress induced by femtosecond laser in fused silica

Nanograting orientation influence on stress induced by femtosecond laser in fused silica
Nanograting orientation influence on stress induced by femtosecond laser in fused silica
Under certain conditions, femtosecond lasers can be used to introduce self-organized nanogratings in the bulk of fused silica. Here, we report that the nanogratings orientation influences the induced stress distribution around laser affected zones.
Champion, Audrey
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Beresna, Martynas
a6dc062e-93c6-46a5-aeb3-8de332cdec7b
Kazansky, Peter G.
a5d123ec-8ea8-408c-8963-4a6d921fd76c
Bellouard, Yves
50467062-29d4-4f06-a65c-7ef44d183550
Champion, Audrey
9fec2056-0d5f-4c51-b402-732ffc8204c6
Beresna, Martynas
a6dc062e-93c6-46a5-aeb3-8de332cdec7b
Kazansky, Peter G.
a5d123ec-8ea8-408c-8963-4a6d921fd76c
Bellouard, Yves
50467062-29d4-4f06-a65c-7ef44d183550

Champion, Audrey, Beresna, Martynas, Kazansky, Peter G. and Bellouard, Yves (2013) Nanograting orientation influence on stress induced by femtosecond laser in fused silica. Progress in Ultrafast Laser Modifications of Materials, France. 15 - 20 Apr 2013. 2 pp . (doi:10.1051/matecconf/20130804008).

Record type: Conference or Workshop Item (Poster)

Abstract

Under certain conditions, femtosecond lasers can be used to introduce self-organized nanogratings in the bulk of fused silica. Here, we report that the nanogratings orientation influences the induced stress distribution around laser affected zones.

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Published date: 2013
Venue - Dates: Progress in Ultrafast Laser Modifications of Materials, France, 2013-04-15 - 2013-04-20
Organisations: Optoelectronics Research Centre

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Local EPrints ID: 380803
URI: https://eprints.soton.ac.uk/id/eprint/380803
PURE UUID: b81ae7cb-e1ef-4cd2-9570-00adbe2ea0ea

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Date deposited: 07 Sep 2015 10:33
Last modified: 19 Jul 2019 20:35

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