The plasmon–exciton interaction in layered nanostructures with two-dimensional J-aggregates
- Авторы: Chmereva T.M.1, Kucherenko M.G.1, Kurmangaleev K.S.1
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Учреждения:
- Orenburg State University
- Выпуск: Том 120, № 6 (2016)
- Страницы: 881-887
- Раздел: Condensed-Matter Spectroscopy
- URL: https://bakhtiniada.ru/0030-400X/article/view/164805
- DOI: https://doi.org/10.1134/S0030400X16060060
- ID: 164805
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Аннотация
The transformation of the electronic excitation energy in a plane-layered nanostructure with two-dimensional J-aggregates of a cyanine dye has been studied theoretically. The dependences of the plasmon–exciton interaction energy on the system parameters have been determined. In the case of small values of the Rabi frequency, the rates of nonradiative energy transfer from surface plasmon–polaritons of the metal substrate to molecular excitons of J-aggregates have been calculated in terms of the perturbation theory. The dispersion laws for hybrid plasmon–exciton states have been determined, and it has been shown that the Rabi splitting can range up to 100 meV.
Об авторах
T. Chmereva
Orenburg State University
Автор, ответственный за переписку.
Email: chmereva@yandex.ru
Россия, Orenburg, 460018
M. Kucherenko
Orenburg State University
Email: chmereva@yandex.ru
Россия, Orenburg, 460018
K. Kurmangaleev
Orenburg State University
Email: chmereva@yandex.ru
Россия, Orenburg, 460018
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