Article ID Journal Published Year Pages File Type
1863219 Physics Letters A 2011 4 Pages PDF
Abstract

Plasmon polaritons in a new system, a monolayer doped graphene embedded in optical microcavity, are studied here. The dispersion law for lower and upper cavity plasmon polaritons is obtained. Peculiarities of Rabi splitting for the system are analyzed; particularly, role of Dirac-like spinor (envelope) wave functions in graphene and corresponding angle factors are considered. Typical Rabi frequencies for maximal (acceptable for Dirac-like electron spectra) Fermi energy and frequencies of polaritons near polariton gap are estimated. The plasmon polaritons in considered system can be used for high-speed information transfer in the THz region.

► Plasmon polaritons in a monolayer doped graphene embedded in optical microcavity, are studied here. ► The dispersion law for lower and upper cavity plasmon polaritons is obtained. ► Peculiarities of Rabi splitting for the system are analyzed. ► Role of Dirac-like wave functions in graphene and corresponding angle factors are considered. ► Typical Rabi frequencies and frequencies of polaritons near polariton gap are estimated.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Physics and Astronomy (General)
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