4.6 Article

Ultrastrong coupling between a cavity resonator and the cyclotron transition of a two-dimensional electron gas in the case of an integer filling factor

Journal

PHYSICAL REVIEW B
Volume 81, Issue 23, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.81.235303

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We investigate theoretically the coupling between a cavity resonator and the cyclotron transition of a two-dimensional electron gas under an applied perpendicular magnetic field. We derive and diagonalize an effective quantum Hamiltonian describing the magnetopolariton excitations of the two-dimensional electron gas for the case of integer filling factors. The limits of validity of the present approach are critically discussed. The dimensionless vacuum Rabi frequency Omega(0)/omega(0) (i.e., normalized to the cyclotron frequency omega(0)) is shown to scale as root alpha n(QW)nu, where alpha is the fine structure constant, n(QW) is the number of quantum wells and nu is the filling factor in each well. We show that with realistic parameters of a high-mobility semiconductor two-dimensional electron gas, the dimensionless coupling Omega(0)/omega(0) can be much larger than 1 in the case of nu >> 1, the latter condition being typically realized for cyclotron transitions in the microwave range. Implications of such ultrastrong coupling regime are discussed.

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