Testing symmetries in effective models of higher derivative field theories
arXiv:0901.1341 · doi:10.1103/PhysRevD.80.105008
Abstract
Higher derivative field theories with interactions raise serious doubts about their validity due to severe energy instabilities. In many cases the implementation of a direct perturbation treatment to excise the dangerous negative-energies from a higher derivative field theory may lead to violations of Lorentz and other symmetries. In this work we study a perturbative formulation for higher derivative field theories that allows the construction of a low-energy effective field theory being a genuine perturbations over the ordinary-derivative theory and having a positive-defined Hamiltonian. We show that some discrete symmetries are recovered in the low-energy effective theory when the perturbative method to reduce the negative-energy degrees of freedom from the higher derivative theory is applied. In particular, we focus on the higher derivative Maxwell-Chern-Simons model which is a Lorentz invariant and parity-odd theory in 2+1 dimensions. The parity violation arises in the effective action of QED as a quantum correction from the massive fermionic sector. We obtain the effective field theory which remains Lorentz invariant, but parity invariant to the order considered in the perturbative expansion.
13 pages, Sec. III, additional references added, P symmetry revised, accepted for publication in PRD
References in corpus (13)
- Avoiding Dark Energy with 1/R Modifications of Gravity
- No-ghost theorem for the fourth-order derivative Pais-Uhlenbeck oscillator model
- The Lee-Wick Standard Model
- A Nonsingular Cosmology with a Scale-Invariant Spectrum of Cosmological Perturbations from Lee-Wick Theory
- Exactly solvable PT-symmetric Hamiltonian having no Hermitian counterpart
- Solution to the ghost problem in fourth order derivative theories
- Classification of Dimension 5 Lorentz Violating Interactions in the Standard Model
- Quantization of the Myers-Pospelov model: the photon sector interacting with standard fermions as a perturbation of QED
- The Photon Sector in the Quantum Myers-Pospelov Model: An improved description
- Living with Ghosts and their Radiative Corrections
- Supersymmetry vs ghosts
- Giving up the ghost
- On the instability of classical dynamics in theories with higher derivatives
Cited by in corpus (30)
- A new CPT-even and Lorentz-Violating nonminimal coupling in the Dirac equation
- Causality and stability for Lorentz-CPT violating electrodynamics with dimension-5 operators
- Matter-gravity scattering in the presence of spontaneous Lorentz violation
- Radiative generation of the CPT-even gauge term of the SME from a dimension-five nonminimal coupling term
- Constraining CPT-even and Lorentz-violating nonminimal couplings with the electron magnetic and electric dipole moments
- BRST symmetry and -algebra in higher derivative models
- Topological self-dual configurations in a Lorentz-violating gauged O(3) sigma model
- Gauge invariances of higher derivative Maxwell-Chern-Simons field theory -- a new Hamiltonian approach
- Generation of geometrical phases and persistent spin currents in 1-dimensional rings by Lorentz-violating terms
- General CPT-even dimension-five nonminimal couplings between fermions and photons yielding EDM and MDM
- Hamiltonian formulation of an effective modified gravity with nondynamical background fields
- On the Lorentz-breaking theory with higher derivatives in spinor sector
- Generation of higher derivatives operators and electromagnetic wave propagation in a Lorentz-violation scenario
- Lagrangian Formulation of a Magnetostatic Field in the Presence of a Minimal Length Scale Based on the Kempf Algebra
- The action principle for dissipative systems
- Causality, unitarity, and indefinite metric in Maxwell-Chern-Simons extensions
- Nonminimal planar electrodynamics modified by higher-derivative terms
- Aspects of Electrodynamics Modified by Some Dimension-five Lorentz Violating Interactions
- Lorentz-violating contributions to the nuclear Schiff moment and nuclear EDM
- Self-dual solitons in a -odd and Lorentz-violating gauged sigma model
- Effective potential in Lorentz-breaking field theory models
- Electrodynamics Modified by Some Dimension-five Lorentz Violating Interactions: Radiative Corrections
- Constraining dimension-six nonminimal Lorentz-violating electron-nucleon interactions with EDM physics
- Perturbative quantization of two-dimensional space-time noncommutative QED
- Lorentz-violating nonminimal coupling contributions in mesonic hydrogen atoms and generation of photon higher-order derivative terms
- Polymer quantization, stability and higher-order time derivative terms
- Finite BRST Mapping in Higher Derivative Models
- Generalized Abelian Gauge Field Theory under Rotor Model
- A first-class approach of higher derivative Maxwell-Chern-Simons Proca model
- Planar generalized electrodynamics for one-loop amplitude in the Heisenberg picture