Mid-infrared transmission properties of step index and large mode area ZnSe microstructured optical fibers
Mid-infrared transmission properties of step index and large mode area ZnSe microstructured optical fibers
ZnSe microstructured fibers have been designed and fabricated using silica capillaries and an air-silica photonic band-gap optical fiber as high-pressure microfluidic templates for semiconductor growth via chemical fluid deposition. We examine their transmission properties over a wide spectral range.
Badding, J.V.
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He, R.
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Sparks, J.R.
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Peacock, A.C.
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Healy, N.
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Sazio, P.J.A.
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Petrovich, M.N.
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2012
Badding, J.V.
940f7adb-73df-4f8a-9c46-e47f5425fef0
He, R.
e4796bae-9498-4817-8047-094c24ea5b17
Sparks, J.R.
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Peacock, A.C.
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Healy, N.
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Sazio, P.J.A.
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Petrovich, M.N.
bfe895a0-da85-4a40-870a-2c7bfc84a4cf
Badding, J.V., He, R., Sparks, J.R., Peacock, A.C., Healy, N., Sazio, P.J.A. and Petrovich, M.N.
(2012)
Mid-infrared transmission properties of step index and large mode area ZnSe microstructured optical fibers.
Advances in Optical Materials, , San Diego, United States.
01 - 03 Feb 2012.
(doi:10.1364/AIOM.2012.ITh3B.3).
Record type:
Conference or Workshop Item
(Paper)
Abstract
ZnSe microstructured fibers have been designed and fabricated using silica capillaries and an air-silica photonic band-gap optical fiber as high-pressure microfluidic templates for semiconductor growth via chemical fluid deposition. We examine their transmission properties over a wide spectral range.
More information
Published date: 2012
Additional Information:
ITH3B.3
Venue - Dates:
Advances in Optical Materials, , San Diego, United States, 2012-02-01 - 2012-02-03
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 335854
URI: http://eprints.soton.ac.uk/id/eprint/335854
PURE UUID: 385b0385-c119-4730-ad19-1f9848b9e0f2
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Date deposited: 15 Mar 2012 08:34
Last modified: 15 Mar 2024 03:15
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Contributors
Author:
J.V. Badding
Author:
R. He
Author:
J.R. Sparks
Author:
A.C. Peacock
Author:
N. Healy
Author:
M.N. Petrovich
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