Light confinement in hyperuniform photonic slabs: high-Q cavities and low-loss waveguides
Light confinement in hyperuniform photonic slabs: high-Q cavities and low-loss waveguides
Using finite-difference-time-domain and band-structure simulations, we demonstrate efficient confinement of TE-polarized radiation and high-Q optical-cavities and low-loss waveguides in planar hyperuniform-disordered (HUD) architectures based on a design strategy that has potential to be a general purpose platform for optical microcircuits.
Amoah, T.
c6334087-1222-495f-97b3-f3a645515076
Florescu, M.
14b7415d-9dc6-4ebe-a125-289e47648c65
10 May 2015
Amoah, T.
c6334087-1222-495f-97b3-f3a645515076
Florescu, M.
14b7415d-9dc6-4ebe-a125-289e47648c65
Amoah, T. and Florescu, M.
(2015)
Light confinement in hyperuniform photonic slabs: high-Q cavities and low-loss waveguides.
In CLEO: Science and Innovations, CLEO-SI 2015.
(doi:10.1364/CLEO_AT.2015.JTu5A.48).
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Abstract
Using finite-difference-time-domain and band-structure simulations, we demonstrate efficient confinement of TE-polarized radiation and high-Q optical-cavities and low-loss waveguides in planar hyperuniform-disordered (HUD) architectures based on a design strategy that has potential to be a general purpose platform for optical microcircuits.
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Published date: 10 May 2015
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Local EPrints ID: 501548
URI: http://eprints.soton.ac.uk/id/eprint/501548
PURE UUID: 7565d4bc-9a8f-47fb-ad0d-6a2f2f4a10f6
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Date deposited: 03 Jun 2025 16:58
Last modified: 04 Jun 2025 02:14
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Author:
T. Amoah
Author:
M. Florescu
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