English

Quantum Corrections to Lorentz Invariance Violating Theories: Fine-Tuning Problem

High Energy Physics - Theory 2008-11-26 v2

Abstract

It is of general agreement that a quantum gravity theory will most probably mean a breakdown of the standard structure of space-time at the Planck scale. This has motivated the study of Planck-scale Lorentz Invariance Violating (LIV) theories and the search for its observational signals. Yet, it has been recently shown that, in a simple scalar-spinor Yukawa theory, radiative corrections to tree-level Planck-scale LIV theories can induce large Lorentz violations at low energies, in strong contradiction with experiment, unless an unnatural fine-tuning mechanism is present. In this letter, we show the calculation of the electron self-energy in the framework given by the Myers-Pospelov model for a Lorentz Invariance Violating QED. We find a contribution that depends on the prefered's frame four-velocity which is not Planck-scale suppressed, showing that this model suffers from the same disease. Comparison with Hughes-Drever experiments requires a fine-tuning of 21 orders of magnitude for this model not to disagree with experiment.

Keywords

Cite

@article{arxiv.hep-th/0607214,
  title  = {Quantum Corrections to Lorentz Invariance Violating Theories: Fine-Tuning Problem},
  author = {P. M. Crichigno and H. Vucetich},
  journal= {arXiv preprint arXiv:hep-th/0607214},
  year   = {2008}
}

Comments

10 pages, no figures. Version acceptd in Physics Letters B

R2 v1 2026-07-22T15:37:27.238Z