Causal structure and algebraic classification of area metric spacetimes in four dimensions
arXiv:0908.1016 · doi:10.1016/j.aop.2010.04.008
Abstract
Area metric manifolds emerge as a refinement of symplectic and metric geometry in four dimensions, where in numerous situations of physical interest they feature as effective matter backgrounds. In this article, this prompts us to identify those area metric manifolds that qualify as viable spacetime backgrounds in the first place, in so far as they support causally propagating matter. This includes an identification of the timelike future cones and their duals associated to an area metric geometry, and thus paves the ground for a discussion of the related local and global causal structure in standard fashion. In order to provide simple algebraic criteria for an area metric manifold to present a consistent spacetime structure, we develop a complete algebraic classification of area metric tensors up to general transformations of frame. Remarkably, a suitable coarsening of this classification allows to prove a theorem excluding the majority of algebraic classes of area metrics as viable spacetimes.
47 pages, 2 figures
References in corpus (8)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- The Refractive Index of Curved Spacetime: the Fate of Causality in QED
- Relativistic analysis of magnetoelectric crystals: extracting a new 4-dimensional P odd and T odd pseudoscalar from Cr_2 O_3 data
- Propagation of light in area metric backgrounds
- Geometry for the accelerating universe
- Radiation-dominated area metric cosmology
- Brans-Dicke geometry
- Light clocks in strong gravitational fields
Cited by in corpus (28)
- Causal structure and electrodynamics on Finsler spacetimes
- Hamilton geometry: Phase space geometry from modified dispersion relations
- On Kottler's path: origin and evolution of the premetric program in gravity and in electrodynamics
- The non-birefringent limit of all linear, skewonless media and its unique light-cone structure
- Beyond the speed of light on Finsler spacetimes
- On the hyperbolicity of Maxwell's equations with a local constitutive law
- Effective metrics and a fully covariant description of constitutive tensors in electrodynamics
- The Kummer tensor density in electrodynamics and in gravity
- Radar orthogonality and radar length in Finsler and metric spacetime geometry
- Quantization of general linear electrodynamics
- Observers' measurements in premetric electrodynamics I: Time and radar length
- Electromagnetic Potential in Pre-Metric Electrodynamics: Causal Structure, Propagators and Quantization
- Gravitational dynamics for all tensorial spacetimes carrying predictive, interpretable and quantizable matter
- Determination of electromagnetic medium from the Fresnel surface
- Non-minimal Einstein-Maxwell theory: the Fresnel equation and the Petrov classification of a trace-free susceptibility tensor
- Quantum Energy Inequalities in Pre-Metric Electrodynamics
- Gravitational closure of matter field equations
- OPERA superluminal neutrinos and Kinematics in Finsler spacetime
- Characterisation and representation of non-dissipative electromagnetic medium with a double light cone
- Non-dissipative electromagnetic medium with a double light cone
- Geometry of Area Without Length
- A restatement of the normal form theorem for area metrics
- Neutrino superluminality without Cherenkov-like processes in Finslerian special relativity
- From area metric backgrounds to the cosmological constant and corrections to the Polyakov action
- Super-Luminal Effects for Finsler Branes as a Way to Preserve the Paradigm of Relativity Theories
- Gravitational radiation from birefringent matter dynamics
- Emergent fracton strings from covariant bi-form gauge field theory
- Loop Special Relativity: Kaluza-Klein area metric as a line element for stringy events