Exciton polaritons in a cylindrical microcavity with an embedded quantum wire

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Abstract

Exciton-light coupling in cylindrical microcavities containing quantum wires has been treated by means of classical electrodynamics within the nonlocal dielectric response model. A typical anticrossing behavior of quasi-one-dimensional exciton-polariton modes has been obtained, as well as the weak-coupling-strong-coupling threshold. Effects of the nonradiative damping of the exciton resonance in the quantum wire on the optical response of the microcavity structure have been analyzed. © 2000 The American Physical Society.

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Kaliteevski, M., Brand, S., Abram, R., & Nikolaev, V. (2000). Exciton polaritons in a cylindrical microcavity with an embedded quantum wire. Physical Review B - Condensed Matter and Materials Physics, 61(20), 13791–13797. https://doi.org/10.1103/PhysRevB.61.13791

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