Consistency of multi-time Dirac equations with general interaction potentials
arXiv:1603.02538 · doi:10.1063/1.4954947
Abstract
In 1932, Dirac proposed a formulation in terms of multi-time wave functions as candidate for relativistic many-particle quantum mechanics. A well-known consistency condition that is necessary for existence of solutions strongly restricts the possible interaction types between the particles. It was conjectured by Petrat and Tumulka that interactions described by multiplication operators are generally excluded by this condition, and they gave a proof of this claim for potentials without spin-coupling. Under smoothness assumptions of possible solutions we show that there are potentials which are admissible, give an explicit example, however, show that none of them fulfills the physically desirable Poincaré invariance. We conclude that in this sense Dirac's multi-time formalism does not allow to model interaction by multiplication operators, and briefly point out several promising approaches to interacting models one can instead pursue.
References in corpus (10)
- Multi-Time Wave Functions for Quantum Field Theory
- Multi-Time Schrödinger Equations Cannot Contain Interaction Potentials
- Avoiding Ultraviolet Divergence by Means of Interior-Boundary Conditions
- Hamiltonians Without Ultraviolet Divergence for Quantum Field Theories
- A relativistically interacting exactly solvable multi-time model for two mass-less Dirac particles in 1+1 dimensions
- A simple explicitly solvable interacting relativistic N-particle model
- Particle creation and annihilation at interior boundaries: One-dimensional models
- Multi-Time Formulation of Pair Creation
- Dirac Equation with External Potential and Initial Data on Cauchy Surfaces
- On the question of current conservation for the Two-Body Dirac equations of constraint theory
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- Consistency Proof for Multi-Time Schrodinger Equations with Particle Creation and Ultraviolet Cut-Off
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- Multi-Time Dynamics of the Dirac-Fock-Podolsky Model of QED
- A Lorentz-Covariant Interacting Electron-Photon System in One Space Dimension
- Singular light cone interactions of scalar particles in 1+3 dimensions
- The multi-time propagators and the consistency condition