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Novel technique for the CO2 laser fabrication of optical devices with sub-micrometer ablation depth precision

Novel technique for the CO2 laser fabrication of optical devices with sub-micrometer ablation depth precision
Novel technique for the CO2 laser fabrication of optical devices with sub-micrometer ablation depth precision
We present novel techniques for the processing of fibre end face and cladding surfaces using a 9.6 µm CO2 laser. We investigate the effects of pulse duration on process parameters.
Boyd, K.
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Simakov, N.
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Daniel, J.M.O.
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Swain, R.
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Mies, E.
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Hemming, A.
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Clarkson, W.A.
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Haub, J.
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Boyd, K.
1b11c256-1e47-4e77-b325-166901747771
Simakov, N.
984eef10-d13b-4cc6-852f-bcc58b432832
Daniel, J.M.O.
6196e732-cd6c-43a7-bc9f-bc4f99e72c23
Swain, R.
cb25c60e-7c90-4f02-97d9-64f2b0989e9a
Mies, E.
db80a117-c7a9-4a08-a147-2a48a23a425a
Hemming, A.
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Clarkson, W.A.
3b060f63-a303-4fa5-ad50-95f166df1ba2
Haub, J.
0eacaab9-0f9a-47c2-9b2d-93990b4f7001

Boyd, K., Simakov, N., Daniel, J.M.O., Swain, R., Mies, E., Hemming, A., Clarkson, W.A. and Haub, J. (2014) Novel technique for the CO2 laser fabrication of optical devices with sub-micrometer ablation depth precision. ECOC 2014 Conference, Cannes, France. 21 - 25 Sep 2014.

Record type: Conference or Workshop Item (Paper)

Abstract

We present novel techniques for the processing of fibre end face and cladding surfaces using a 9.6 µm CO2 laser. We investigate the effects of pulse duration on process parameters.

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More information

e-pub ahead of print date: 2014
Additional Information: P.1.4
Venue - Dates: ECOC 2014 Conference, Cannes, France, 2014-09-21 - 2014-09-25
Organisations: Optoelectronics Research Centre

Identifiers

Local EPrints ID: 372230
URI: https://eprints.soton.ac.uk/id/eprint/372230
PURE UUID: a00d37f0-932b-4d4c-b35f-84cb4d4ce784

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Date deposited: 04 Dec 2014 13:33
Last modified: 19 Jul 2019 20:57

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Contributors

Author: K. Boyd
Author: N. Simakov
Author: J.M.O. Daniel
Author: R. Swain
Author: E. Mies
Author: A. Hemming
Author: W.A. Clarkson
Author: J. Haub

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