Improved bending property of half-filled photonic crystal fiber
Improved bending property of half-filled photonic crystal fiber
A half-filling technique was demonstrated to improve the bending properties of a fluid-filled photonic crystal fiber. Such a technique can realize to fill selectively a fluid into half of air holes in a PCF. The bending properties of the half-filled PCF are quite different from those of the fully-filled PCF. Distinct bending properties were observed when the half-filled PCF was bent toward different fiber orientations. Especially, the transmission spectrum of the half-filled PCF was hardly affected while the fiber was bent toward the filled-hole orientation.
12197-12202
Wang, Yiping
3da133a6-980c-4622-9c63-4e691fc0cae1
Tan, Xiaoling
b2d5441c-af05-4cec-b189-2709d2e8ee5d
Jin, Wei
ced7b68f-0cb0-4c24-9ccf-194e6c629256
Liu, Shujing
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Ying, Diqing
b816a754-c0fa-4aa5-a9e4-589a03b008ca
Hoo, Yeuk Lai
b713d787-6a70-400b-80f9-007b9088db9b
2010
Wang, Yiping
3da133a6-980c-4622-9c63-4e691fc0cae1
Tan, Xiaoling
b2d5441c-af05-4cec-b189-2709d2e8ee5d
Jin, Wei
ced7b68f-0cb0-4c24-9ccf-194e6c629256
Liu, Shujing
3d8de1e5-783f-4856-9710-fbdaf088f2d3
Ying, Diqing
b816a754-c0fa-4aa5-a9e4-589a03b008ca
Hoo, Yeuk Lai
b713d787-6a70-400b-80f9-007b9088db9b
Wang, Yiping, Tan, Xiaoling, Jin, Wei, Liu, Shujing, Ying, Diqing and Hoo, Yeuk Lai
(2010)
Improved bending property of half-filled photonic crystal fiber.
Optics Express, 18 (12), .
(doi:10.1364/OE.18.012197).
Abstract
A half-filling technique was demonstrated to improve the bending properties of a fluid-filled photonic crystal fiber. Such a technique can realize to fill selectively a fluid into half of air holes in a PCF. The bending properties of the half-filled PCF are quite different from those of the fully-filled PCF. Distinct bending properties were observed when the half-filled PCF was bent toward different fiber orientations. Especially, the transmission spectrum of the half-filled PCF was hardly affected while the fiber was bent toward the filled-hole orientation.
Text
oe-18-12-12197
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Published date: 2010
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 355962
URI: http://eprints.soton.ac.uk/id/eprint/355962
ISSN: 1094-4087
PURE UUID: 83ce13f4-1ee2-4dc5-8ae8-3a13a613e606
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Date deposited: 09 Sep 2013 13:49
Last modified: 14 Mar 2024 14:40
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Contributors
Author:
Yiping Wang
Author:
Xiaoling Tan
Author:
Wei Jin
Author:
Shujing Liu
Author:
Diqing Ying
Author:
Yeuk Lai Hoo
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