Anomalously efficient high-speed ultrafast laser nanostructuring in silica glass
Anomalously efficient high-speed ultrafast laser nanostructuring in silica glass
Increase in modification strength induced by ultrafast laser writing at high scanning speed in silica glass is demonstrated. Counterintuitively, despite lower energy density, stronger modification is produced, which is beneficial for 5D optical data storage.
nanostructuring, optical data storage, silica glass, ultrafast lasers
Wang, Huijun
71d8cb32-58db-496b-8e5d-cf378dda5a53
Lei, Yuhao
347ba758-df03-47b6-baed-3a58285173f7
Deng, Chun
3627dfb3-8a2a-4868-a146-a5e2cb570c33
Shayeganrad, Gholamreza
8ea55a9a-4fe2-49df-a0f4-55fa81596dab
Kazansky, Peter G.
a5d123ec-8ea8-408c-8963-4a6d921fd76c
Wang, Huijun
71d8cb32-58db-496b-8e5d-cf378dda5a53
Lei, Yuhao
347ba758-df03-47b6-baed-3a58285173f7
Deng, Chun
3627dfb3-8a2a-4868-a146-a5e2cb570c33
Shayeganrad, Gholamreza
8ea55a9a-4fe2-49df-a0f4-55fa81596dab
Kazansky, Peter G.
a5d123ec-8ea8-408c-8963-4a6d921fd76c
Wang, Huijun, Lei, Yuhao and Deng, Chun
,
et al.
(2023)
Anomalously efficient high-speed ultrafast laser nanostructuring in silica glass.
Kling, Rainer, Watanabe, Akira and Pfleging, Wilhelm
(eds.)
In Laser-based Micro- and Nanoprocessing XVII.
vol. 12409,
SPIE.
3 pp
.
(doi:10.1117/12.2650718).
Record type:
Conference or Workshop Item
(Paper)
Abstract
Increase in modification strength induced by ultrafast laser writing at high scanning speed in silica glass is demonstrated. Counterintuitively, despite lower energy density, stronger modification is produced, which is beneficial for 5D optical data storage.
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More information
e-pub ahead of print date: 17 March 2023
Venue - Dates:
Laser-based Micro- and Nanoprocessing XVII 2023, , San Francisco, United States, 2023-01-31 - 2023-02-02
Keywords:
nanostructuring, optical data storage, silica glass, ultrafast lasers
Identifiers
Local EPrints ID: 489153
URI: http://eprints.soton.ac.uk/id/eprint/489153
ISSN: 0277-786X
PURE UUID: 43c8a97e-c0c3-40f5-afe9-beb66111e1db
Catalogue record
Date deposited: 16 Apr 2024 16:30
Last modified: 18 Jun 2024 01:57
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Contributors
Author:
Huijun Wang
Author:
Yuhao Lei
Author:
Chun Deng
Author:
Gholamreza Shayeganrad
Author:
Peter G. Kazansky
Editor:
Rainer Kling
Editor:
Akira Watanabe
Editor:
Wilhelm Pfleging
Corporate Author: et al.
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