Generation of Axion-Like Couplings via Quantum Corrections in a Lorentz Violating Background
arXiv:1304.5484 · doi:10.1103/PhysRevD.89.045005
Abstract
Light pseudoscalars, or axion like particles (ALPs), are much studied due to their potential relevance to the fields of particle physics, astrophysics and cosmology. The most relevant coupling of ALPs from the viewpoint of current experimental searches is to the photon: in this work, we study the generation of this coupling as an effect of quantum corrections, originated from an underlying Lorentz violating background. Most interestingly, we show that the interaction so generated turns out to be Lorentz invariant, thus mimicking the standard ALPs coupling to the photon that is considered in the experiments. This consideration implies that violations of spacetime symmetries, much studied as possible consequences of physics in very high energy scales, might infiltrate in other realms of physics in unsuspected ways. Additionally, we conjecture that a similar mechanism can also generate Lorentz invariant couplings involving scalar particles and photons, playing a possible role in the phenomenology of Higgs bosons.
v2: 13 pages, 1 figure. Version accepted for publication in PRD
References in corpus (8)
- Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC
- Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
- Electrodynamics with Lorentz-violating operators of arbitrary dimension
- Any Light Particle Search II -- Technical Design Report
- Fermions with Lorentz-violating operators of arbitrary dimension
- Four-dimensional aether-like Lorentz-breaking QED revisited and problem of ambiguities
- IAXO - The International Axion Observatory
- The ambiguity-free four-dimensional Lorentz-breaking Chern-Simons action
Cited by in corpus (26)
- Asymptotic states and renormalization in Lorentz-violating quantum field theory
- Local effects of the quantum vacuum in Lorentz-violating electrodynamics
- Constraining CPT-even and Lorentz-violating nonminimal couplings with the electron magnetic and electric dipole moments
- Radiative corrections and Lorentz violation
- General CPT-even dimension-five nonminimal couplings between fermions and photons yielding EDM and MDM
- Effects of CPT-odd terms of dimensions three and five on electromagnetic propagation in continuous matter
- Generation of higher derivatives operators and electromagnetic wave propagation in a Lorentz-violation scenario
- Field sources in a Lorentz symmetry breaking scenario with a single background vector
- New effects in the interaction between electromagnetic sources mediated by nonminimal Lorentz violating interactions
- The axion-photon mixing in non-linear electrodynamic scenarios
- Symmetric and antisymmetric constitutive tensors for bi-isotropic and bi-anisotropic media
- External sources in a minimal and nonminimal CPT-odd Lorentz violating Maxwell electrodynamics
- Perturbative generation of photon Lorentz violating terms from a pseudo-tensor Lorentz-breaking extension of QED
- The point-charge self-energy in a nonminimal Lorentz violating Maxwell Electrodynamics
- Constraining dimension-six nonminimal Lorentz-violating electron-nucleon interactions with EDM physics
- On the anomalies in Lorentz-breaking theories
- Rotatory power reversal induced by magnetic-current in bi-isotropic media
- Topological self-dual configurations in a Maxwell--Higgs model with a CPT-odd and Lorentz-violating nonminimal coupling
- model in aether-superspace
- Experimental signatures of Kalb-Ramond-like particles
- Probing the interference between non-linear, axionic and space-time-anisotropy effects in the QED vacuum
- Semi-transparent boundaries in CPT-even Lorentz violating electrodynamics
- Axion-Photon Interaction from Nonminimal Dimension-5 Lorentz-Violating Operators
- Non-Perturbative One-Loop Effective Action for QED with Yukawa Couplings
- One-loop Photon's Effective Action in the Noncommutative Scalar QED
- Constraining EDM and MDM lepton dimension five interactions in the electroweak sector