Equivalence between the Dirac oscillator and a spin-1/2 fermion embedded in a transverse homogeneous magnetic field: movement in a (2 + 1)-dimensional world
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引用次数: 3
Abstract
The planar Dirac oscillator embedded in a transverse uniform magnetic field has emerged in applications to optical models [1][3] and graphene [4][10]. In a recent work, it has been shown in a simple way that the planar Dirac oscillator and a spin-1/2 fermion embedded a transverse homogeneous magnetic field are equivalent problems [11]. This achievement, put into effect with 4×4 realizations of the Dirac matrices in a (3+1)-dimensional world, fills with suspicions of wrongdoing many works diffused in the literature. In the present work, even with a content easy to deal with by graduate students in Physics, the same achievement is reached by using 2 × 2 realizations of the Dirac matrices in a (2+1)-dimensional world. In the Minkowski spacetime, the behaviour of a spin1/2 fermion of mass m subject to the most generic set of interactions is governed by the Dirac equation (in natural units ~ = c = 1)
期刊介绍:
The Revista Brasileira de Ensino de Física - RBEF - is an open-access journal of the Brazilian Physical Society (SBF) devoted to the improvement of Physics teaching at all academic levels. Through the publication of peer-reviewed, high-quality papers, we aim at promoting Physics and correlated sciences, thus contributing to the scientific education of society. The RBEF accepts papers on theoretical and experimental aspects of Physics, materials and methodology, history and philosophy of sciences, education policies and themes relevant to the physics-teaching and research community.