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Signatures of Plexitonic States in Molecular Electroluminescence
Justin P Bergfield1,2, Joshua R Hendrickson3
1Department of Physics, Illinois State University, Moulton Hall 311, Normal, IL, 61790, USA. jpbergf@ilstu.edu.
Abstract:
We develop a quantum master equation (QME) approach to investigate the electroluminesence (EL) of molecules confined between metallic electrodes and coupled to quantum plasmonic modes. Within our general state-based framework, we describe electronic tunneling, vibrational damping, environmental dephasing, and the quantum coherent dynamics of coupled quantum electromagnetic field modes. As an example, we calculate the STM-induced spontaneous emission of a tetraphenylporphyrin (TPP) molecule coupled to a nanocavity plasmon. In the weak molecular exciton-plasmon coupling regime we find excellent agreement with experiments, including above-threshold hot luminescence, an effect not described by previous semiclassical calculations. In the strong coupling regime, we analyze the spectral features indicative of the formation of plexitonic states.
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