Lorentz violation, gravity, dissipation and holography

被引:0
作者
Elias Kiritsis
机构
[1] APC,Crete Center for Theoretical Physics, Department of Physics
[2] Université Paris 7,undefined
[3] Diderot,undefined
[4] CNRS/IN2P3 (UMR du CNRS 7164),undefined
[5] CEA/IRFU,undefined
[6] University of Crete,undefined
来源
Journal of High Energy Physics | / 2013卷
关键词
AdS-CFT Correspondence; Space-Time Symmetries; Neutrino Physics;
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摘要
We reconsider Lorentz Violation (LV) at the fundamental level. We argue that Lorentz Violation is intimately connected with gravity and that LV couplings in QFT must always be fields in a gravitational sector. Diffeomorphism covariance, implementing general charnges of frame, is intact and the LV couplings transform as tensors under coordinate/frame changes. Therefore searching for LV is one of the most sensitive ways of looking for new physics, either new interactions or modifications of known ones. Energy dissipation/Cerenkov radiation is shown to be a generic feature of LV in QFT. A general computation is done in strongly coupled theories with gravity duals. It is shown that in scale invariant regimes, the energy dissipation rate depends non-trivially on two characteristic exponents, the Lifshitz exponent and the hyperscaling violation exponent.
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