Vacuum Birefringence in a Supercritical Magnetic Field and a Subcritical Electric Field
arXiv:2202.05477 · doi:10.1140/epjc/s10052-023-11243-1
Abstract
Recent ultra-intense lasers of subcritical fields and proposed observations of the x-rays polarization from highly magnetized neutron stars of supercritical fields have attracted attention to vacuum birefringence, a unique feature of nonlinear electrodynamics. We propose a formulation of vacuum birefringence that incorporates the effects of the weaker electric field added to the extremely strong magnetic field. To do so, we first derive a closed analytical expression for the one-loop effective Lagrangian for the combined magnetic and electric fields by using an explicit formula of the one-loop effective Lagrangian for an arbitrarily strong magnetic field. We then employ the expression to derive the polarization and magnetization of the vacuum, from which the permittivity and permeability for weak probe fields are obtained. Finally, we find the refractive indices and the associated polarization vectors for the case of parallel magnetic and electric fields. The proposed formulation predicts that an electric field along the magnetic field reduces the birefringence and rotates the polarization vectors. Such effects should be taken into account for accurate polarimetry of the x-rays from magnetized neutron stars, which will prove the fundamental aspect of the strong field quantum electrodynamics (QED) and explore the extreme fields of astrophysical bodies.
References in corpus (9)
- Polarized x-rays from a magnetar
- Effective Action of QED in Electric Field Backgrounds
- Probing vacuum polarization effects with high-intensity lasers
- Mapping the Electromagnetic Fields of Heavy-Ion Collisions with the Breit-Wheeler Process
- Physics and astrophysics of strong magnetic field systems with eXTP
- Vacuum birefringence at x-ray free-electron lasers
- Multirefringence phenomena in nonlinear electrodynamics
- Light Propagation Effects In QED: Effective Action Approach
- Birefringence and non-transversality of light propagation in an ultra-strongly magnetized vacuum
Cited by in corpus (5)
- Exploring Nonlinear Electrodynamics Theories: Shadows of Regular Black Holes and Horizonless Ultra-Compact Objects
- Study of QED singular properties for variable gyromagnetic ratio
- 3+1 formulation of light modes in nonlinear electrodynamics
- Singular electromagnetic fields in nonlinear electrodynamics with a constant background field
- Energy Loss of Newborn Magnetars by Schwinger Process