Local electric current correlation function in an exponentially decaying magnetic field
arXiv:1203.5634 · doi:10.1103/PhysRevD.85.125035
Abstract
The effect of an exponentially decaying magnetic field on the dynamics of Dirac fermions in 3+1 dimensions is explored. The spatially decaying magnetic field is assumed to be aligned in the third direction, and is defined by {\mathbf{B}}(x)=B(x){\mathbf{e}}_{z}, with B(x)=B_{0}e^{-ξ x/\ell_{B}}. Here, ξ is a dimensionless damping factor and \ell_{B}=(eB_{0})^{-1/2} is the magnetic length. As it turns out, the energy spectrum of fermions in this inhomogeneous magnetic field can be analytically determined using the Ritus method. Assuming the magnetic field to be strong, the chiral condensate and the \textit{local} electric current correlation function are computed in the lowest Landau level (LLL) approximation and the results are compared with those arising from a strong homogeneous magnetic field. Although the constant magnetic field B_{0} can be reproduced by taking the limit of ξ-> 0 and/or x-> 0 from B(x), these limits turn out to be singular once the quantum corrections are taken into account.
V1: 16 pages, 7 figures, 2 tables; V2: Section II improved, references added. Version accepted for publication in PRD
References in corpus (15)
- Magnetic confinement of massless Dirac fermions in graphene
- Equation of State of a Dense and Magnetized Fermion System
- Peculiar Nature of Snake States in Graphene
- Dynamically Induced Zeeman Effect in Massless QED
- Bound states in inhomogeneous magnetic field in graphene: a semiclassical approach
- Dynamically Generated Anomalous Magnetic Moment in Massless QED
- Dynamics in the quantum Hall effect and the phase diagram of graphene
- On the Possibility of Superluminal Neutrino Propagation
- Electromagnetically superconducting phase of vacuum in strong magnetic field: structure of superconductor and superfluid vortex lattices in the ground state
- Chiral asymmetry and axial anomaly in magnetized relativistic matter
- Does there arise a significant enhancement of the dynamical quark mass in external magnetic field?
- Magnetoelectric Effect in Strongly Magnetized Color Superconductivity
- Improved ring potential of QED at finite temperature and in the presence of weak and strong magnetic field
- Localization of Dirac-like excitations in graphene in the presence of smooth inhomogeneous magnetic fields
- Nucleon-Nucleon Scattering in a Strong External Magnetic Field and the Neutrino Emissivity
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