Zeeman effect and magnetic anomalies in narrow-gap semiconductor quantum dots |
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Authors: | S. J. Prado, C. Trallero-Giner, V. L pez-Richard, A. M. Alcalde,G. E. Marques |
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Affiliation: | a Departamento de Física, Universidade Federal de São Carlos, São Carlos, SP 13565-905, Brazil;b Department of Theoretical Physics, Havana University, San Lazaro, Habana 10400, Cuba;c Instituto de Física de São Carlos, Universidade de São Paulo, São Carlos, SP 13560-970, Brazil |
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Abstract: | We present a systematic theoretical study, based on the Kane–Weiler 8×8 k·p model, of the linear Zeeman splitting introduced by the interaction between the angular momentum and the magnetic field which can give a measure of the non-linear Zeeman effect associated with interband coupling and diamagnetic contributions. The conduction and valence bands g-factors are calculated for InSb spherical and semi-spherical quantum dots. The calculations of the g-factors showed an almost linear dependence, for the ground state, on the magnetic field. We have also found that the strong magnetic field dependence as well as the dependence on the dot size of the effective spin splitting can be unambiguously attributed to the strength of the inter-level mixing. |
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Keywords: | Quantum dots Zeeman splitting |
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