Nonminimal planar electrodynamics modified by higher-derivative terms
arXiv:2309.16839 · doi:10.1103/PhysRevD.108.115032
Abstract
We consider a (2+1)-dimensional modified electrodynamics endowed with terms that are either Lorentz-invariant or Lorentz-violating and involve an ever increasing number of derivatives. Our construction relies on U(1) gauge invariance and the Abelian Chern-Simons term poses the starting point. The structure of the nonminimal Standard-Model Extension (SME) in (3+1) spacetime dimensions serves as an inspiration for our pursuit. For elaborate studies and applications we particularly focus on the second term of the operator series in the general framework, which is the first contribution with additional derivatives. The latter forms the essential ingredient for several models of modified planar electrodynamics to be examined. The propagators of the models constitute the foundation for us deriving the physical propagating modes as well as for drawing conclusions on unitarity in the quantum regime. We are also interested in identifying parameter regions of sub- and superluminal mode propagation and determine classical solutions of the field equations for the planar models introduced. Moreover, a duality between an extended Chern-Simons theory and a subset of the fermion sector coefficients in the nonminimal SME is pointed out, as well. Finally, the integer quantum Hall effect is chosen as a testbed to demonstrate the applicability of our findings to real physical systems. Predictions on momentum- and direction-dependent corrections of the Hall resistivity are made at the level of effective field theory, which could be tested in experiments. Thus, the (2+1)-dimensional models proposed are potentially applicable to model electromagnetic phenomena in certain planar condensed-matter systems.
32 pages, 6 figures
References in corpus (49)
- Topological Field Theory of Time-Reversal Invariant Insulators
- Electrodynamics with Lorentz-violating operators of arbitrary dimension
- Two-Dimensional Matter: Order, Curvature and Defects
- Consequences of a condensed matter realization of Lorentz violating QED in Weyl semi-metals
- The Lee-Wick Standard Model
- Sensitive polarimetric search for relativity violations in gamma-ray bursts
- Lorentz-violating spinor electrodynamics and Penning traps
- Gauge Invariance and the Pauli-Villars Regulator in Lorentz- and CPT-Violating Electrodynamics
- Consistency of isotropic modified Maxwell theory: Microcausality and unitarity
- Classical kinematics for Lorentz violation
- Addendum: Ultrahigh-energy cosmic-ray bounds on nonbirefringent modified-Maxwell theory
- Ultrahigh-energy cosmic-ray bounds on nonbirefringent modified-Maxwell theory
- Cerenkov Radiation in a Lorentz-Violating and Birefringent Vacuum
- Vacuum Cherenkov radiation in spacelike Maxwell-Chern-Simons theory
- The borophene sheet: A solid-state platform for space-time engineering
- On electrodynamics of chiral matter
- Causal approach for the electron-positron scattering in Generalized Quantum Electrodynamics
- Searching for Lee-Wick Gauge Bosons at the LHC
- Neutrino Masses in the Lee-Wick Standard Model
- Local effects of the quantum vacuum in Lorentz-violating electrodynamics
- Path Integral Quantization of Generalized Quantum Electrodynamics
- Optical-cavity tests of higher-order Lorentz violation
- Casimir effect between ponderable media as modeled by the standard model extension
- Electroweak Precision Data and the Lee-Wick Standard Model
- One-Loop Renormalization of Lee-Wick Gauge Theory
- Maxwell-Chern-Simons vortices in a CPT-odd Lorentz-violating Higgs Electrodynamics
- Electroweak precision constraints on the Lee-Wick Standard Model
- Unique Identification of Lee-Wick Gauge Bosons at Linear Colliders
- Understanding Lorentz violation with Rashba interaction
- Coulomb-type interaction under Lorentz symmetry breaking effects
- Magnetic-conductivity effects on electromagnetic propagation in dispersive matter
- Higher order derivative operators as quantum corrections
- Green functions and propagation in the Bopp-Podolsky electrodynamics
- Photon decay in UHE air showers: stringent bound on Lorentz violation
- The point-charge self-energy in Lee-Wick Theories
- Absence of Long-Wavelength Cerenkov Radiation With Isotropic Lorentz and CPT Violation
- Probing features of the Lee-Wick quantum electrodynamics
- External sources in a minimal and nonminimal CPT-odd Lorentz violating Maxwell electrodynamics
- Spin- and velocity-dependent non-relativistic potentials in modified electrodynamics
- Unitarity and Lee-Wick prescription at one loop level in the effective Myers-Pospelov electrodynamics: the annihilation
- Stable interactions between the extended Chern-Simons theory and a charged scalar field with higher derivatives: Hamiltonian formalism
- Higher order derivatives extension of Maxwell-Chern-Simons electrodynamics in the presence of field sources and material boundaries
- Second gradient electromagnetostatics: electric point charge, electrostatic and magnetostatic dipoles
- A new bound on Lorentz violation based on the absence of vacuum Cherenkov radiation in ultra-high energy air showers
- Higher derivative Chern-Simons extension in the noncommutative QED
- Perturbative Aspects of CPT-Even Lorentz-Violating Scalar Chromodynamics
- Lorentz-violating extension of scalar QED at finite temperature
- Semi-transparent boundaries in CPT-even Lorentz violating electrodynamics
- Bounds on Vacuum-Orthogonal Lorentz and CPT Violation from Radiative Corrections