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Nanotexturing of glass surface by ultrafast laser assisted wet etching

Nanotexturing of glass surface by ultrafast laser assisted wet etching
Nanotexturing of glass surface by ultrafast laser assisted wet etching
Surface texturing with 30 nm resolution is demonstrated by KOH wet etching and ultrafast laser nanostructuring of silica. An increase of three times in retardance is achieved leading to the fabrication of dichroic glass-metal patterns.
978-1-55752-999-2
Drevinskas, R.
23f858b5-8750-4113-ba11-49cfefc3dbb7
Gecevičius, M.
271576ee-dd9d-40b3-ab2f-19686b91dc64
Beresna, M.
a6dc062e-93c6-46a5-aeb3-8de332cdec7b
Bellouard, Y.
66b556cd-9d79-4d65-a1c8-3fcb470a1368
Kazansky, P.G.
a5d123ec-8ea8-408c-8963-4a6d921fd76c
Drevinskas, R.
23f858b5-8750-4113-ba11-49cfefc3dbb7
Gecevičius, M.
271576ee-dd9d-40b3-ab2f-19686b91dc64
Beresna, M.
a6dc062e-93c6-46a5-aeb3-8de332cdec7b
Bellouard, Y.
66b556cd-9d79-4d65-a1c8-3fcb470a1368
Kazansky, P.G.
a5d123ec-8ea8-408c-8963-4a6d921fd76c

Drevinskas, R., Gecevičius, M., Beresna, M., Bellouard, Y. and Kazansky, P.G. (2014) Nanotexturing of glass surface by ultrafast laser assisted wet etching. CLEO: Applications and Technology, United States. 08 - 13 Jun 2014. (doi:10.1364/CLEO_AT.2014.AM1L.2).

Record type: Conference or Workshop Item (Other)

Abstract

Surface texturing with 30 nm resolution is demonstrated by KOH wet etching and ultrafast laser nanostructuring of silica. An increase of three times in retardance is achieved leading to the fabrication of dichroic glass-metal patterns.

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More information

e-pub ahead of print date: June 2014
Additional Information: AM1L.2
Venue - Dates: CLEO: Applications and Technology, United States, 2014-06-08 - 2014-06-13
Organisations: Optoelectronics Research Centre

Identifiers

Local EPrints ID: 368310
URI: http://eprints.soton.ac.uk/id/eprint/368310
ISBN: 978-1-55752-999-2
PURE UUID: 0b20d695-1e97-452b-a5cc-c405a2586620

Catalogue record

Date deposited: 06 Sep 2014 13:08
Last modified: 21 Feb 2019 17:31

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