Abstract: We analyze the spontaneous emission dynamics of a V-type quantum emitter close to a molybdenum disulfide ($$(MoS_{2})$$) nanodisk. We show that a $$(MoS_{2})$$ nanodisk leads to both high-degree quantum interference and non-Markovian dynamics in the spontaneous emission of the nearby quantum emitter. We analyze the spontaneous emission dynamics by combining quantum dynamics calculations with electromagnetic calculations. A rich population dynamics ranging from decaying Rabi oscillations to complex decaying oscillations and strong population exchange between the upper states of the quantum emitter is obtained depending on the parameters of the system. Our results have potential applications in quantum technologies.
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Pages: 330-335
DOI: *As the DOI is a unique identifier, it is already available in the pdf version. **The DOI link will be activated in the first midst of January 2026.
Ioannis Thanopulos, Vasilios Karanikolas, Emmanuel Paspalakis, "Simulation of Quantum Interference and Non-Markovian Emission Dynamics Induced by Localized Exciton-Polaritons," WSEAS Transactions on Systems, vol. 18, pp. 330-335, 2019, DOI:
Ioannis Thanopulos, Vasilios Karanikolas, Emmanuel Paspalakis. Simulation of Quantum Interference and Non-Markovian Emission Dynamics Induced by Localized Exciton-Polaritons.
WSEAS Transactions on Systems. 2019;18:330-335.