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Exciton-polariton mediated interaction between two nitrogen-vacancy color centers in diamond using two-dimensional transition metal dichalcogenides
In this paper, starting from a quantum master equation, we discuss the interaction between two negatively charged nitrogen-vacancy color centers in diamond via exciton-polaritons propagating in a two-dimensional transition metal dichalcogenide layer in close proximity to a diamond crystal. We focus...
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Published in: | Physical review. B 2021-02, Vol.103 (8), p.1, Article 085407 |
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description | In this paper, starting from a quantum master equation, we discuss the interaction between two negatively charged nitrogen-vacancy color centers in diamond via exciton-polaritons propagating in a two-dimensional transition metal dichalcogenide layer in close proximity to a diamond crystal. We focus on the optical 1.945 eV transition and model the nitrogen-vacancy color centers as two-level (artificial) atoms. We find that the interaction parameters and the energy-level renormalization constants are extremely sensitive to the distance of the nitrogen-vacancy centers to the transition-metal dichalcogenide layer. Analytical expressions are obtained for the spectrum of the exciton-polaritons and for the damping constants entering the Lindblad equation. The conditions for occurrence of exciton mediated superradiance are discussed. |
doi_str_mv | 10.1103/PhysRevB.103.085407 |
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C. G. ; Amorim, B. ; Peres, N. M. R.</creator><creatorcontrib>Henriques, J. C. G. ; Amorim, B. ; Peres, N. M. R.</creatorcontrib><description>In this paper, starting from a quantum master equation, we discuss the interaction between two negatively charged nitrogen-vacancy color centers in diamond via exciton-polaritons propagating in a two-dimensional transition metal dichalcogenide layer in close proximity to a diamond crystal. We focus on the optical 1.945 eV transition and model the nitrogen-vacancy color centers as two-level (artificial) atoms. We find that the interaction parameters and the energy-level renormalization constants are extremely sensitive to the distance of the nitrogen-vacancy centers to the transition-metal dichalcogenide layer. Analytical expressions are obtained for the spectrum of the exciton-polaritons and for the damping constants entering the Lindblad equation. 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The conditions for occurrence of exciton mediated superradiance are discussed.</description><subject>Chalcogenides</subject><subject>Color centers</subject><subject>Constants</subject><subject>Damping</subject><subject>Diamonds</subject><subject>Excitation spectra</subject><subject>Excitons</subject><subject>Interaction parameters</subject><subject>Nitrogen</subject><subject>Parameter sensitivity</subject><subject>Polaritons</subject><subject>Transition metal compounds</subject><subject>Vacancies</subject><issn>2469-9950</issn><issn>2469-9969</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2021</creationdate><recordtype>article</recordtype><recordid>eNo9kctOwzAQRSMEEhX0C9hYYp0yiRM3WUJVHlIlEIJ15MekdZXYxXZb-h38MA4FVnNndOdoRjdJrjKYZBnQm5fVwb_i7m4SmwlUZQHTk2SUF6xO65rVp_-6hPNk7P0aADIG9RTqUfI1_5Q6WJNubMfdoEiPSvOAimgT0HEZdBwKDHtEQ8LeEqODs0s06Y5LbuSBSNtZRyQOfh_XSAT01iiy9dosh51U6R6NjyTekeB4lD_YHkMcKC1XvJMDUyv0l8lZyzuP4996kbzfz99mj-ni-eFpdrtIJYU8pBkgbVvGBAPJK2BtfCkHJVEVuaSiaoHSgoLg7VSgFKWomZoyIaLMq6Io6UVyfeRunP3Yog_N2m5dvNA3eVGXJeRVnkUXPbqks947bJuN0z13hyaDZgig-QugGZpjAPQbjzl_6A</recordid><startdate>20210204</startdate><enddate>20210204</enddate><creator>Henriques, J. 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B</jtitle><date>2021-02-04</date><risdate>2021</risdate><volume>103</volume><issue>8</issue><spage>1</spage><pages>1-</pages><artnum>085407</artnum><issn>2469-9950</issn><eissn>2469-9969</eissn><abstract>In this paper, starting from a quantum master equation, we discuss the interaction between two negatively charged nitrogen-vacancy color centers in diamond via exciton-polaritons propagating in a two-dimensional transition metal dichalcogenide layer in close proximity to a diamond crystal. We focus on the optical 1.945 eV transition and model the nitrogen-vacancy color centers as two-level (artificial) atoms. We find that the interaction parameters and the energy-level renormalization constants are extremely sensitive to the distance of the nitrogen-vacancy centers to the transition-metal dichalcogenide layer. Analytical expressions are obtained for the spectrum of the exciton-polaritons and for the damping constants entering the Lindblad equation. 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subjects | Chalcogenides Color centers Constants Damping Diamonds Excitation spectra Excitons Interaction parameters Nitrogen Parameter sensitivity Polaritons Transition metal compounds Vacancies |
title | Exciton-polariton mediated interaction between two nitrogen-vacancy color centers in diamond using two-dimensional transition metal dichalcogenides |
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