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Nanosystems: Physics, Chemistry, Mathematics, 2014, Volume 5, Issue 2, Pages 234–248 (Mi nano856)  

Localized states and storage of optical information under the qubit-light interaction in micro-size cavity arrays

E. S. Sedova, S. M. Arakeliana, A. P. Alodjantsab

a Department of Physics and Applied Mathematics, Vladimir State University namedafter A. G. and N. G. Stoletovs, Gorky Street 87, RU-600000, Vladimir, Russia
b Russian Quantum Center, 100 Novaya str., Skolkovo, Moscow region, 143025, Russia
Abstract: We suggest the model of lattice low branch (LB) polaritons based on the array of weakly coupled microsize cavities, each containing a small but macroscopic number of two-level systems (qubits). We reveal various dynamical regimes, such as diffusive, self-trapped, breathing and solitonic for polariton wave packet propagation under tight-binding approximation. We focus our attention on the bright polariton soliton formation in a high quality cavity array emerging due to two-body polariton-polariton scattering processes that take place at each cavity under the qubit-light interaction. A physical algorithm for the spatially distributed storage of optical information where various dynamical LB polariton soliton states are used is proposed. This algorithm can be realized with the help of manipulating group velocity of a polariton soliton in the cavity array and obtained by smooth variation of qubit-light detuning.
Keywords: polariton, quantum information, qubit, soliton, spatially-periodic structure.
Bibliographic databases:
Document Type: Article
PACS: 42.50.Pq, 05.45.Yv, 42.50.Ex, 71.36.+c
Language: English
Citation: E. S. Sedov, S. M. Arakelian, A. P. Alodjants, “Localized states and storage of optical information under the qubit-light interaction in micro-size cavity arrays”, Nanosystems: Physics, Chemistry, Mathematics, 5:2 (2014), 234–248
Citation in format AMSBIB
\Bibitem{SedAraAlo14}
\by E.~S.~Sedov, S.~M.~Arakelian, A.~P.~Alodjants
\paper Localized states and storage of optical information under the qubit-light interaction in micro-size cavity arrays
\jour Nanosystems: Physics, Chemistry, Mathematics
\yr 2014
\vol 5
\issue 2
\pages 234--248
\mathnet{http://mi.mathnet.ru/nano856}
\elib{https://elibrary.ru/item.asp?id=21592355}
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