A numerical evaluation of vacuum polarization tensor in constant external magnetic fields
arXiv:1304.3655 · doi:10.1142/S0217751X13501005
Abstract
Hattori-Itakura have recently derived the full Landau-level summation form for the photon vacuum polarization tensor in constant external magnetic fields at the one-loop level. The Landau-level summation form is essential when the photon momentum exceeds the threshold of the pair creation of charged particles in a magnetic field stronger than the squared mass of the charged particle. The tensor has three different form factors depending on the tensor direction with respect to the external magnetic field. The renormalization is nontrivial because these form factors are expressed in terms of double or triple summation forms. We give a numerical UV subtraction method which can be applied to numerically evaluate the form factors in constant external magnetic fields. We numerically investigate the photon vacuum polarization tensor in the form of the Landau-level summation and estimate the systematic errors coming from truncation of the Landau-level summation in a parameter region realized in heavy ion collision experiments. We find that the error is practically controllable at an level for electrons and muons in strong magnetic fields expected in heavy ion collisions in the experimentally feasible kinematic parameter regions.
34 pages,90 figures, ws-ijmpa.cls style, introduction modified, figures with weaker magnetic fields added, references added
References in corpus (13)
- The Chiral Magnetic Effect
- Synchrotron radiation by fast fermions in heavy-ion collisions
- Vacuum birefringence in strong magnetic fields: (I) Photon polarization tensor with all the Landau levels
- Photon decay in strong magnetic field in heavy-ion collisions
- Views of the Chiral Magnetic Effect
- Azimuthal anisotropy of direct photons
- Magnetic-field Induced Screening Effect and Collective Excitations
- Pair creation by a photon in a strong magnetic field
- Azimuthal Asymmetry of Prompt Photons in Nuclear Collisions
- Magnetically amplified tunneling of the 3rd kind as a probe of minicharged particles
- Magnetically amplified light-shining-through-walls via virtual minicharged particles
- Azimuthal flow of decay photons in relativistic nuclear collisions
- Strong and ratio asymptotics for Laguerre polynomials revisited
Cited by in corpus (11)
- Advances in QED with intense background fields
- The photon polarization tensor in a homogeneous magnetic or electric field
- A renormalization group approach for QCD in a strong magnetic field
- Photon polarization tensor in a magnetized plasma: Absorptive part
- Gluon polarization tensor in a magnetized medium: Analytic approach starting from the sum over Landau levels
- Zeta Function Regularization of Photon Polarization Tensor for a Magnetized Vacuum
- Thermal corrections to the gluon magnetic Debye mass
- The fermion self-energy and damping rate in a hot magnetized plasma
- Note on all-order Landau-level structures of the Heisenberg-Euler effective actions for QED and QCD
- Vacuum Polarization and Photon Propagation in an Electromagnetic Plane Wave
- Photon and dilepton spectra from nonlinear QED effects in supercritical magnetic fields induced by heavy-ion collisions