When polarons meet polaritons: Exciton-vibration interactions in organic molecules strongly coupled to confined light fields

Ning Wu, Johannes Feist, and Francisco J. Garcia-Vidal
Phys. Rev. B 94, 195409 – Published 8 November 2016

Abstract

We present a microscopic semianalytical theory for the description of organic molecules interacting strongly with a cavity mode. Exciton-vibration coupling within the molecule and exciton-cavity interaction are treated on an equal footing by employing a temperature-dependent variational approach. The interplay between strong exciton-vibration coupling and strong exciton-cavity coupling gives rise to a hybrid ground state, which we refer to as the lower polaron polariton. Explicit expressions for the ground-state wave function, the zero-temperature quasiparticle weight of the lower polaron polariton, the photoluminescence line strength, and the mean number of vibrational quanta are obtained in terms of the optimal variational parameters. The dependence of these quantities upon the exciton-cavity coupling strength reveals that strong cavity coupling leads to an enhanced vibrational dressing of the cavity mode, and at the same time a vibrational decoupling of the dark excitons, which in turn results in a lower polaron polariton resembling a single-mode dressed bare lower polariton in the strong-coupling regime. Thermal effects on several observables are briefly discussed.

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  • Received 30 August 2016
  • Revised 18 October 2016

DOI:https://doi.org/10.1103/PhysRevB.94.195409

©2016 American Physical Society

Physics Subject Headings (PhySH)

  1. Research Areas
Condensed Matter, Materials & Applied Physics

Authors & Affiliations

Ning Wu1,*, Johannes Feist1,†, and Francisco J. Garcia-Vidal1,2,‡

  • 1Departamento de Física Teórica de la Materia Condensada and Condensed Matter Physics Center (IFIMAC), Universidad Autónoma de Madrid, E-28049 Madrid, Spain
  • 2Donostia International Physics Center (DIPC), E-20018 Donostia/San Sebastián, Spain

  • *wun1985@gmail.com
  • johannes.feist@uam.es
  • fj.garcia@uam.es

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Issue

Vol. 94, Iss. 19 — 15 November 2016

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