Slow-light plasmonic metamaterial based on dressed-state analog of electromagnetically induced transparency

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Resumé

We consider a simple configuration for realizing one-dimensional slow-light metamaterials with large bandwidth-delay products using stub-shaped Fabry–Perot resonators as building blocks. Each meta-atom gives rise to large group indices because of a classical analog of the dressed-state picture of electromagnetically induced transparency. By connecting up to eight meta-atoms, we find bandwidth-delay products over unity and group indices approaching 100. Our approach is quite general and can be applied to any type of Fabry–Perot resonators and tuned to different operating wavelengths.
OriginalsprogEngelsk
TidsskriftOptics Letters
Vol/bind40
Udgave nummer18
Sider (fra-til)4253-4256
ISSN0146-9592
DOI
StatusUdgivet - 2015

Fingeraftryk

resonators
analogs
bandwidth
products
atoms
unity
configurations
wavelengths

Citer dette

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abstract = "We consider a simple configuration for realizing one-dimensional slow-light metamaterials with large bandwidth-delay products using stub-shaped Fabry–Perot resonators as building blocks. Each meta-atom gives rise to large group indices because of a classical analog of the dressed-state picture of electromagnetically induced transparency. By connecting up to eight meta-atoms, we find bandwidth-delay products over unity and group indices approaching 100. Our approach is quite general and can be applied to any type of Fabry–Perot resonators and tuned to different operating wavelengths.",
author = "S{\o}ren Raza and Bozhevolnyi, {Sergey I.}",
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Slow-light plasmonic metamaterial based on dressed-state analog of electromagnetically induced transparency. / Raza, Søren; Bozhevolnyi, Sergey I.

I: Optics Letters, Bind 40, Nr. 18, 2015, s. 4253-4256.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

TY - JOUR

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AU - Raza, Søren

AU - Bozhevolnyi, Sergey I.

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N2 - We consider a simple configuration for realizing one-dimensional slow-light metamaterials with large bandwidth-delay products using stub-shaped Fabry–Perot resonators as building blocks. Each meta-atom gives rise to large group indices because of a classical analog of the dressed-state picture of electromagnetically induced transparency. By connecting up to eight meta-atoms, we find bandwidth-delay products over unity and group indices approaching 100. Our approach is quite general and can be applied to any type of Fabry–Perot resonators and tuned to different operating wavelengths.

AB - We consider a simple configuration for realizing one-dimensional slow-light metamaterials with large bandwidth-delay products using stub-shaped Fabry–Perot resonators as building blocks. Each meta-atom gives rise to large group indices because of a classical analog of the dressed-state picture of electromagnetically induced transparency. By connecting up to eight meta-atoms, we find bandwidth-delay products over unity and group indices approaching 100. Our approach is quite general and can be applied to any type of Fabry–Perot resonators and tuned to different operating wavelengths.

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