Published September 15, 2007 | Version v1
Journal article

New look at the modified Coulomb potential in a strong magnetic field

  • 1. Institute for Studies in Theoretical Physics and Mathematics (IPM), School of Physics, P.O. Box 19395-5531, Tehran (Iran, Islamic Republic of)
  • 2. Department of Physics, Sharif University of Technology, P.O. Box 11155-9161, Tehran (Iran, Islamic Republic of)

Description

The static Coulomb potential of quantum electrodynamics (QED) is calculated in the presence of a strong magnetic field in the lowest Landau level approximation using two different methods. First, the vacuum expectation value of the corresponding Wilson loop is calculated perturbatively in two different regimes of dynamical mass mdyn, i.e., |qparallel2|<<mdyn2<<|eB| and mdyn2<<|qparallel2|<<|eB|, where qparallel is the longitudinal component of the momentum relative to the external magnetic field B. The result is then compared with the static potential arising from Born approximation. Both results coincide. Although the arising potentials show different behavior in the aforementioned regimes, a novel dependence on the angle θ between the particle-antiparticle's axis and the direction of the magnetic field is observed. In the regime |qparallel2|<<mdyn2<<|eB|, for strong enough magnetic field and depending on the angle θ, a qualitative change occurs in the Coulomb-like potential; whereas for θ=0, π the potential is repulsive, it exhibits a minimum for angles θ set-membership sign 0,π

Additional details

Publishing Information

Journal Title
Physical Review. D, Particles Fields
Journal Volume
76
Journal Issue
6
Journal Page Range
p. 065013-065013.17
ISSN
0556-2821
CODEN
PRVDAQ

INIS

Optional Information

Notes
(c) 2007 The American Physical Society