Controlling the attenuation of hollow core fibers using gas-induced differential refractive index
Controlling the attenuation of hollow core fibers using gas-induced differential refractive index
We demonstrate significant confinement loss reduction in anti-resonant hollow-core fibers through refractive index changes induced by differential gas pressure filling of the core and cladding elements. In our fiber, loss reduces 2.8-fold at 1.3µm.
Kelly, Thomas, William
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Horak, Peter
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Davidson, Ian
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Partridge, Matthew C
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Jasion, Gregory
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Rikimi, Shuichiro
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Taranta, Austin
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Richardson, David
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Poletti, Francesco
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Wheeler, Natalie
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Kelly, Thomas, William
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Horak, Peter
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Davidson, Ian
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Partridge, Matthew C
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Jasion, Gregory
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Rikimi, Shuichiro
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Taranta, Austin
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Richardson, David
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Poletti, Francesco
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Wheeler, Natalie
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Kelly, Thomas, William, Horak, Peter, Davidson, Ian, Partridge, Matthew C, Jasion, Gregory, Rikimi, Shuichiro, Taranta, Austin, Richardson, David, Poletti, Francesco and Wheeler, Natalie
(2021)
Controlling the attenuation of hollow core fibers using gas-induced differential refractive index.
CLEO 2021, Virtual.
09 - 14 May 2021.
2 pp
.
(In Press)
Record type:
Conference or Workshop Item
(Other)
Abstract
We demonstrate significant confinement loss reduction in anti-resonant hollow-core fibers through refractive index changes induced by differential gas pressure filling of the core and cladding elements. In our fiber, loss reduces 2.8-fold at 1.3µm.
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CLEO2021 TK final
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Accepted/In Press date: 12 February 2021
Venue - Dates:
CLEO 2021, Virtual, 2021-05-09 - 2021-05-14
Identifiers
Local EPrints ID: 449886
URI: http://eprints.soton.ac.uk/id/eprint/449886
PURE UUID: 588debea-48f3-4861-a5b5-d0e9deb1033d
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Date deposited: 23 Jun 2021 16:31
Last modified: 13 Dec 2021 03:16
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Contributors
Author:
Matthew C Partridge
Author:
Shuichiro Rikimi
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