RELATIVISTIC GRAVITY WITH A DYNAMICAL PREFERRED FRAME
David Mattingly, Ted Jacobson
Abstract
Open-access reader
David Mattingly, Ted Jacobson
Abstract
Open-access reader
While general relativity possesses local Lorentz invariance, both canonical quantum gravity and string theory suggest that Lorentz invariance may be broken at high energies. Broken Lorentz invariance has also been postulated as an explanation for astrophysical anomalies such as the missing GZK cutoff. Therefore, we seek an effective field theory description of gravity where Lorentz invariance is broken. We will construct a candidate theory and then briefly discuss some of the implications.
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While general relativity possesses local Lorentz invariance, both canonical quantum gravity and string theory suggest that Lorentz invariance may be broken at high energies. Broken Lorentz invariance has also been postulated as an explanation for astrophysical anomalies such as the missing GZK cutoff. Therefore, we seek an effective field theory description of gravity where Lorentz invariance is broken. We will construct a candidate theory and then briefly discuss some of the implications.
Key concepts: Lorentz covariance, Physics, Quantum gravity, Test theories of special relativity, Lorentz transformation, CPT symmetry, Theoretical physics, Tests of special relativity