Volume manufacturing of hollow core photonic band gap fibers: challenges and opportunities
Volume manufacturing of hollow core photonic band gap fibers: challenges and opportunities
A fluid dynamics model is used to investigate yield increase in hollow-core bandgap fibers. 100km of good fiber from one preform seems feasible; for higher yields some observed distortions would need to be addressed.
Jasion, G.
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Poletti, F.
9adcef99-5558-4644-96d7-ce24b5897491
Shrimpton, J.
9cf82d2e-2f00-4ddf-bd19-9aff443784af
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
March 2015
Jasion, G.
16cfff1d-d178-41d1-a092-56e6239726b8
Poletti, F.
9adcef99-5558-4644-96d7-ce24b5897491
Shrimpton, J.
9cf82d2e-2f00-4ddf-bd19-9aff443784af
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
Jasion, G., Poletti, F., Shrimpton, J. and Richardson, D.J.
(2015)
Volume manufacturing of hollow core photonic band gap fibers: challenges and opportunities.
Optical Fiber Communication Conference 2015, Los Angeles, Los Angeles, United States.
22 - 26 Mar 2015.
3 pp
.
Record type:
Conference or Workshop Item
(Paper)
Abstract
A fluid dynamics model is used to investigate yield increase in hollow-core bandgap fibers. 100km of good fiber from one preform seems feasible; for higher yields some observed distortions would need to be addressed.
More information
Published date: March 2015
Additional Information:
W2A.37
Venue - Dates:
Optical Fiber Communication Conference 2015, Los Angeles, Los Angeles, United States, 2015-03-22 - 2015-03-26
Organisations:
Optoelectronics Research Centre, Aeronautics, Astronautics & Comp. Eng, Aerodynamics & Flight Mechanics Group
Identifiers
Local EPrints ID: 378933
URI: http://eprints.soton.ac.uk/id/eprint/378933
PURE UUID: e73658d2-3691-42b0-a7bd-097f71c79513
Catalogue record
Date deposited: 10 Jul 2015 15:53
Last modified: 15 Mar 2024 03:29
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Contributors
Author:
G. Jasion
Author:
F. Poletti
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