Electric dipole moment of magnetoexciton in concentric quantum rings

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Abstract

We study properties of exciton in a weakly coupled concentric quantum rings, penetrated by an axially directed magnetic flux and subjected to an electric field in the ring's plane. To this end, we adopt a simple model of quasi-one-dimensional rotator, for which the wave functions and the corresponding energies we found by using the double Fourier series expansion method. Revealed multiple intersections of the energy levels provide conditions for abrupt changes of the radial and the angular quantum numbers, making possible the tunnelling of carriers between rings and allowing the formation of a permanent large dipole moment. We show that the electric and magnetic polarizability of concentric quantum rings with a trapped exciton are very sensible to external electric and magnetic fields.

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Garcia, L. F., Mikhailov, I. D., & Yu Revinova, S. (2017). Electric dipole moment of magnetoexciton in concentric quantum rings. In Journal of Physics: Conference Series (Vol. 935). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/935/1/012026

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