How does the electromagnetic field couple to gravity, in particular to metric, nonmetricity, torsion, and curvature?
arXiv:gr-qc/0001010 · doi:10.1007/3-540-40988-2_25
Abstract
The coupling of the electromagnetic field to gravity is an age-old problem. Presently, there is a resurgence of interest in it, mainly for two reasons: (i) Experimental investigations are under way with ever increasing precision, be it in the laboratory or by observing outer space. (ii) One desires to test out alternatives to Einstein's gravitational theory, in particular those of a gauge-theoretical nature, like Einstein-Cartan theory or metric-affine gravity. A clean discussion requires a reflection on the foundations of electrodynamics. If one bases electrodynamics on the conservation laws of electric charge and magnetic flux, one finds Maxwell's equations expressed in terms of the excitation H=(D,H) and the field strength F=(E,B) without any intervention of the metric or the linear connection of spacetime. In other words, there is still no coupling to gravity. Only the constitutive law H= functional(F) mediates such a coupling. We discuss the different ways of how metric, nonmetricity, torsion, and curvature can come into play here. Along the way, we touch on non-local laws (Mashhoon), non-linear ones (Born-Infeld, Heisenberg-Euler, Plebanski), linear ones, including the Abelian axion (Ni), and find a method for deriving the metric from linear electrodynamics (Toupin, Schoenberg). Finally, we discuss possible non-minimal coupling schemes.
Latex2e, 26 pages. Contribution to "Testing Relativistic Gravity in Space: Gyroscopes, Clocks, Interferometers ...", Proceedings of the 220th Heraeus-Seminar, 22 - 27 August 1999 in Bad Honnef, C. Laemmerzahl et al. (eds.). Springer, Berlin (2000) to be published (Revised version uses Springer Latex macros; Sec. 6 substantially rewritten; appendices removed; the list of references updated)
References in corpus (7)
- Regular Black Hole in General Relativity Coupled to Nonlinear Electrodynamics
- New Regular Black Hole Solution from Nonlinear Electrodynamics
- Non-Singular Charged Black Hole Solution for Non-Linear Source
- Past electron-positron g-2 experiments yielded sharpest bound on CPT violation for point particles
- Parity Violating Gravitational Coupling Of Electromagnetic Fields
- Spacetime metric from linear electrodynamics
- Wave propagation in linear electrodynamics
Cited by in corpus (53)
- Torsion Gravity: a Reappraisal
- Gravitational Lensing Under the Effect of Weyl and Bumblebee Gravities: Applications of Gauss-Bonnet Theorem
- Non-minimal coupling for the gravitational and electromagnetic fields: A general system of equations
- Regular nonminimal magnetic black holes in spacetimes with a cosmological constant
- Modified gravity: a unified approach
- Non-minimal coupling for the gravitational and electromagnetic fields: black hole solutions and solitons
- Strong gravitational lensing for the photons coupled to Weyl tensor in a Schwarzschild black hole spacetime
- Linear pre-metric electrodynamics and deduction of the light cone
- Maxwell's field coupled nonminimally to quadratic torsion: Induced axion field and birefringence of the vacuum
- Non-minimal coupling of photons and axions
- Non-minimal Einstein-Yang-Mills-Higgs theory: Associated, color and color-acoustic metrics for the Wu-Yang monopole model
- One-loop corrections to the photon propagator in the curved-space QED
- Double shadow of a regular phantom black hole as photons couple to Weyl tensor
- Polarized image of a Schwarzschild black hole with a thin accretion disk as photon couples to Weyl tensor
- Nonminimal coupling for the gravitational and electromagnetic fields: Traversable electric wormholes
- Reconstruction of -gravity in the absence of matter
- Clarifying possible misconceptions in the foundations of general relativity
- Minimal coupling in presence of non-metricity and torsion
- Fundamental Symmetries and Spacetime Geometries in Gauge Theories of Gravity: Prospects for Unified Field Theories
- A twisted look on kappa-Minkowski: U(1) gauge theory
- Einstein-aether theory with a Maxwell field: General formalism
- Non-minimal Wu-Yang wormhole
- Torsion nonminimally coupled to the electromagnetic field and birefringence
- Observable signals in a string inspired axion-dilaton background and Randall-Sundrum scenario
- Effective metrics in the non-minimal Einstein-Yang-Mills-Higgs theory
- Constitutive law of nonlocal gravity
- Anisotropic cosmological models with non-minimally coupled magnetic field
- A gentle introduction to the foundations of classical electrodynamics: The meaning of the excitations (D,H) and the field strengths (E, B)
- Absorption cross section and Hawking radiation of the electromagnetic field with Weyl corrections
- Gravitational waves and electrodynamics: New perspectives
- Electrodynamics of a Cosmic Dark Fluid
- Geometric optics for a coupling model of the electromagnetic and gravitational fields
- Nonminimal black holes with regular electric field
- Equivalence principle and electromagnetic field: no birefringence, no dilaton, and no axion
- Accelerated expansion of the Universe driven by dynamic self-interaction
- Non-minimal Einstein-Maxwell theory: the Fresnel equation and the Petrov classification of a trace-free susceptibility tensor
- Einstein-Cartan-Dirac gravity with symmetry breaking
- New parity-violating photon-axion interaction
- Light propagation with non-minimal couplings in a two-component cosmic dark fluid with an Archimedean-type force and unlighted cosmological epochs
- Gravity-induced birefringence within the framework of Poincare gauge theory
- Recent developments in premetric classical electrodynamics
- Electrodynamics and spacetime geometry: Astrophysical applications
- Mimetic-Metric-Torsion with induced Axial mode and Phantom barrier crossing
- Cosmological Dark sector from a Mimetic-Metric-Torsion perspective
- Maxwell-type behaviour from a geometrical structure
- The CPT-violating effects on neutrons' gravitational bound state
- Electromagnetic analogue space-times, analytically and algebraically
- Maxwell field with Torsion
- Non-minimal electrodynamics and resonance interactions in relativistic plasma
- Nonminimal dyons with regular gravitational, electric and axion fields
- Riemannian geometry without the hypotheses of homogeneity and symmetry
- Detect black holes using photons for coupling model of electromagnetic and gravitational fields
- Gauss-Bonnet Contributions to the Entropy of Extremal Black Holes in the Gauge-Gravity sector