Optical refractometric sensors based on embedded nanowire microcoil resonators
Optical refractometric sensors based on embedded nanowire microcoil resonators
We present a novel, robust, and compact refractometric sensor based on a high Q factor embedded nanowire microcoil resonator with an intrinsic fluidic channel. Ideally, sensitivities as high as 1000 nm/RIU and a refractive index resolution of 10 can be achieved.
Xu, F.
98d7620b-58a8-486d-aea1-660658579611
Horak, P.
520489b5-ccc7-4d29-bb30-c1e36436ea03
Brambilla, G.
815d9712-62c7-47d1-8860-9451a363a6c8
June 2007
Xu, F.
98d7620b-58a8-486d-aea1-660658579611
Horak, P.
520489b5-ccc7-4d29-bb30-c1e36436ea03
Brambilla, G.
815d9712-62c7-47d1-8860-9451a363a6c8
Xu, F., Horak, P. and Brambilla, G.
(2007)
Optical refractometric sensors based on embedded nanowire microcoil resonators.
OSA Topical Conference on Nanophotonics, Hangzhou, China.
18 - 21 Jun 2007.
1 pp
.
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Conference or Workshop Item
(Paper)
Abstract
We present a novel, robust, and compact refractometric sensor based on a high Q factor embedded nanowire microcoil resonator with an intrinsic fluidic channel. Ideally, sensitivities as high as 1000 nm/RIU and a refractive index resolution of 10 can be achieved.
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Published date: June 2007
Venue - Dates:
OSA Topical Conference on Nanophotonics, Hangzhou, China, 2007-06-18 - 2007-06-21
Identifiers
Local EPrints ID: 47791
URI: http://eprints.soton.ac.uk/id/eprint/47791
PURE UUID: 59548770-8a58-4b76-a259-bdbca3747d40
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Date deposited: 10 Aug 2007
Last modified: 16 Mar 2024 03:27
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Contributors
Author:
F. Xu
Author:
P. Horak
Author:
G. Brambilla
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