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Mesoscopic spin-orbit effect in the semiconductor nanostructure electron g factor

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dc.contributor.author Sandoval, M. A. Toloza
dc.contributor.author Silva, A. Ferreira da
dc.contributor.author Silva, E. A. de Andrada e
dc.contributor.author Rocca, G. C. La
dc.creator Sandoval, M. A. Toloza
dc.creator Silva, A. Ferreira da
dc.creator Silva, E. A. de Andrada e
dc.creator Rocca, G. C. La
dc.date.accessioned 2014-11-11T18:03:46Z
dc.date.available 2014-11-11T18:03:46Z
dc.date.issued 2012
dc.identifier.issn 1098-0121
dc.identifier.uri http://repositorio.ufba.br/ri/handle/ri/16561
dc.description p. 1-4 pt_BR
dc.description.abstract The renormalization of the electron g factor by the confining potential in semiconductor nanostructures is considered. A new effective k⋅p Hamiltonian for the electronic states in III–V semiconductor nanostructures in the presence of an external magnetic field is introduced. The mesoscopic spin-orbit (Rashba type) and Zeeman interactions are taken into account on an equal footing. It is then solved analytically for the electron effective g factor in symmetric quantum wells (g∗QW). Comparison with different spin quantum beat measurements in GaAs and InGaAs structures demonstrates the accuracy and utility of the theory. The quantum size effects in g∗QW are easily understood and its anisotropy Δg∗QW (i.e., the difference between the in-plane and perpendicular configurations) is shown to be given by a mesoscopic spin-orbit effect having the same origin as the Rashba one. pt_BR
dc.language.iso en pt_BR
dc.rights Acesso Aberto pt_BR
dc.source http://dx.doi.org.ez10.periodicos.capes.gov.br/10.1103/PhysRevB.86.195302 pt_BR
dc.title Mesoscopic spin-orbit effect in the semiconductor nanostructure electron g factor pt_BR
dc.title.alternative Physical Review B pt_BR
dc.type Artigo de Periódico pt_BR
dc.identifier.number v. 86, n. 19 pt_BR
dc.publisher.country Brasil pt_BR


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