English

Planck-scale Lorentz violation constrained by Ultra-High-Energy Cosmic Rays

High Energy Astrophysical Phenomena 2009-10-02 v3 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology

Abstract

We investigate the consequences of higher dimension Lorentz violating, CPT even kinetic operators that couple standard model fields to a non-zero vector field in an Effective Field Theory framework. Comparing the ultra-high energy cosmic ray spectrum reconstructed in the presence of such terms with data from the Pierre Auger observatory allows us to establish two sided bounds on the coefficients of the mass dimension five and six operators for the proton and pion. Our bounds imply that for both protons and pions, the energy scale of Lorentz symmetry breaking must be well above the Planck scale. In particular, the dimension five operators are constrained at the level of 103MPlanck110^{-3} M_{\rm Planck}^{-1}. The magnitude of the dimension six proton coefficient is bounded at the level of 106MPlanck210^{-6} M_{Planck}^{-2} except in a narrow range where the pion and proton coefficients are both negative and nearly equal. In this small area, the magnitude of the dimension six proton coefficient must only be below 103MPlanck210^{-3} M_{\rm Planck}^{-2}. Constraints on the dimension six pion coefficient are found to be much weaker, but still below MPlanck2M_{\rm Planck}^{-2}.

Keywords

Cite

@article{arxiv.0902.1756,
  title  = {Planck-scale Lorentz violation constrained by Ultra-High-Energy Cosmic Rays},
  author = {Luca Maccione and Andrew M. Taylor and David M. Mattingly and Stefano Liberati},
  journal= {arXiv preprint arXiv:0902.1756},
  year   = {2009}
}

Comments

v1:21 pages, 5 figures. Submitted to JCAP. v2: Accepted by JCAP. References added. v3: DESY report number added

R2 v1 2026-06-21T12:09:56.839Z