Microcausality in strongly interacting fields
arXiv:1401.5381 · doi:10.1103/PhysReVD.89.065008
Abstract
We study the properties of strongly interacting massive quantum fields in space-time as resulting from a parametric decay of the fields with a large decay width . The resulting imaginary part of the retarded and advanced propagators in this case is of Lorentzian form and the theory conserves microcausality, i.e. the commutator between the fields vanishes for space-like distances in space-time. However, when considering separately space-like and time-like components of the spectral function in momentum space we find microcausality to be violated for each component separately. This implies that the modeling of effective field theories for strongly interacting systems has to be considered with great care and restrictions to time-like four momenta in case of broad spectral functions have to be ruled out. Furthermore, when employing effective propagators with a width depending explicitly on three-momentum the commutator of the fields no longer vanishes for since the related field theory becomes nonlocal and violates microcausality.
7 pages, 5 figures, submitted to Phys. Rev. D
References in corpus (16)
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- The QCD equation of state with dynamical quarks
- The QCD transition temperature: results with physical masses in the continuum limit
- On the Strongly-Interacting Low-Viscosity Matter Created in Relativistic Nuclear Collisions
- Susceptibilities and the Phase Structure of a Chiral Model with Polyakov Loops
- Spectral functions at small energies and the electrical conductivity in hot, quenched lattice QCD
- The phase structure of the Polyakov--quark-meson model beyond mean field
- Parton transport and hadronization from the dynamical quasiparticle point of view
- Bulk viscosity of QCD matter near the critical temperature
- Magnetic-Field-Induced insulator-conductor transition in SU(2) quenched lattice gauge theory
- From Kadanoff-Baym dynamics to off-shell parton transport
- Spectral sum rules for the quark-gluon plasma
- Bulk viscosity in quasi particle models
- Dynamical quasiparticles properties and effective interactions in the sQGP
- QCD thermodynamics and confinement from a dynamical quasiparticle point of view
- Dynamical equilibration of strongly interacting "infinite" parton matter within the parton-hadron-string dynamics transport approach
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