4.7 Article

Constraints on Lorentz violation from gravitational Cerenkov radiation

Journal

PHYSICS LETTERS B
Volume 749, Issue -, Pages 551-559

Publisher

ELSEVIER
DOI: 10.1016/j.physletb.2015.08.060

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Funding

  1. United States Department of Energy [DE-SC0010120]
  2. Indiana University Center for Spacetime Symmetries

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Limits on gravitational. Cerenkov radiation by cosmic rays are obtained and used to constrain coefficients for Lorentz violation in the gravity sector associated with operators of even mass dimensions, including orientation-dependent effects. We use existing data from cosmic-ray telescopes to obtain conservative two-sided constraints on 80 distinct Lorentz-violating operators of dimensions four, six, and eight, along with conservative one-sided constraints on three others. Existing limits on the nine minimal operators at dimension four are improved by factors of up to a billion, while 74 of our explicit limits represent stringent first constraints on nonminimal operators. Prospects are discussed for future analyses incorporating effects of Lorentz violation in the matter sector, the role of gravitational. Cerenkov radiation by high-energy photons, data from gravitational-wave observatories, the tired-light effect, and electromagnetic. Cerenkov radiation by gravitons. (C) 2015 The Authors. Published by Elsevier B.V.

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