Perturbative unitarity and higher-order Lorentz symmetry breaking
arXiv:1802.06918 · doi:10.1103/PhysRevD.98.035035
Abstract
We study perturbative unitarity in the scalar sector of the Myers-Pospelov model. The model introduces a preferred four-vector which breaks Lorentz symmetry and couples to a five-dimension operator. When the preferred four-vector is chosen in the pure timelike or lightlike direction, the model becomes a higher time derivative theory, leading to a cubic dispersion relation. Two of the poles are shown to be perturbatively connected to the standard ones, while a third pole, which we call the Lee-Wick-like pole, is associated to a negative metric, in Hilbert space, threatening the preservation of unitarity. The pure spacelike case is a normal theory in the sense that it has only two solutions both being small perturbations over the standard ones. We analyze perturbative unitarity for purely spacelike and timelike cases using the optical theorem and considering a quartic self-interaction term. By computing discontinuities in the loop diagram, we arrive at a pinching condition which determines the propagation of particles and Lee-Wick-like particles through the cut. We find that the contribution for Lee-Wick-like particles vanishes for any external momenta, leaving only the contribution of particles, thus preserving one-loop unitarity in both cases.
New version with concordant frame analysis. Accepted in PRD. 12 pages, 4 figures
References in corpus (17)
- Electrodynamics with Lorentz-violating operators of arbitrary dimension
- The Lee-Wick Standard Model
- Fakeons And Lee-Wick Models
- A new CPT-even and Lorentz-Violating nonminimal coupling in the Dirac equation
- New constraints on Planck-scale Lorentz Violation in QED from the Crab Nebula
- Radiatively induced Lorentz-violating operator of mass dimension five in QED
- Neutrino Masses in the Lee-Wick Standard Model
- The Photon Sector in the Quantum Myers-Pospelov Model: An improved description
- Effects of a CPT-even and Lorentz-violating nonminimal coupling on the electron-positron scattering
- Higher-order Lorentz-invariance violation, quantum gravity and fine-tuning
- Ultraviolet Properties of the Higgs Sector in the Lee-Wick Standard Model
- Extended Hamiltonian Formalism and Lorentz-Violating Lagrangians
- Induced higher-derivative Lorentz-violating Chern-Simons term at finite temperature
- Covariant Quantization of CPT-violating Photons
- Myers-Pospelov Model as an Ensemble of Pais-Uhlenbeck Oscillators: Unitarity and Lorentz Invariance Violation
- Unitarity and Lee-Wick prescription at one loop level in the effective Myers-Pospelov electrodynamics: the annihilation
- Quantization of Space-like States in Lorentz-Violating Theories
Cited by in corpus (6)
- Hamiltonian formulation of an effective modified gravity with nondynamical background fields
- Unitarity in Maxwell-Carroll-Field-Jackiw electrodynamics
- Perturbative generation of photon Lorentz violating terms from a pseudo-tensor Lorentz-breaking extension of QED
- On quantum aspects of the higher-derivative Lorentz-breaking extension of QED
- Nonminimal planar electrodynamics modified by higher-derivative terms
- Tree-level unitarity, causality and higher-order Lorentz and CPT violation