Publication | Open Access
Limits on Lorentz violation in gravity from worldwide superconducting gravimeters
39
Citations
28
References
2018
Year
EngineeringGeneral RelativityPhysicsGravitational Lorentz ViolationCosmologyExperimental GravityModified GravityGravitational WaveGravitational PhysicGravity EffectsLocal TidesLorentz ViolationGravitation TheoryGeodesy
We have investigated Lorentz violation through analyzing tides-subtracted gravity data measured by superconducting gravimeters. At the level of precision of superconducting gravimeters, we have brought up and resolved an existing issue of accuracy due to unaccounted local tidal effects in previous solid-earth tidal model used. Specifically, we have taken local tides into account with a brand new first-principles tidal model with ocean tides included, as well as removed potential bias from local tides by using a worldwide array of 12 superconducting gravimeters. Compared with previous test with local gravimeters, a more accurate and competitive bound on space-space components of gravitational Lorentz violation has been achieved up to the order of ${10}^{\ensuremath{-}10}$.
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