Magnetic-field dependence of hole levels in self-assembled InGaAs quantum dots

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Abstract

Recent magnetotransport experiments of holes in InGaAs quantum dots [D. Reuter, P. Kailuweit, A. D. Wieck, U. Zeitler, O. Wibbelhoff, C. Meier, A. Lorke, and J. C. Maan, Phys. Rev. Lett. 94, 026808 (2005)] are interpreted by employing a multiband k·p Hamiltonian, which considers the interaction between heavy hole and light hole subbands explicitly. No need of invoking an incomplete energy shell filling is required within this model. The crucial role we ascribe to the heavy hole-light hole interaction is further supported by one-band local-spin-density functional calculations, which show that Coulomb interactions do not induce any incomplete hole shell filling and therefore cannot account for the experimental magnetic field dispersion. © 2005 The American Physical Society.

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Climente, J. I., Planelles, J., Pi, M., & Malet, F. (2005). Magnetic-field dependence of hole levels in self-assembled InGaAs quantum dots. Physical Review B - Condensed Matter and Materials Physics, 72(23). https://doi.org/10.1103/PhysRevB.72.233305

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