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20022011
most citedRelativity tests by complementary rotating Michelson-Morley experiments

153 citations · 679 across the 14 of their papers we have counts for

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8 papers · 1 filter

gr-qc20091 cited

Nanogap Transducer for Broadband Gravitational Wave Detection

Guilherme L. Pimentel, Odylio D. Aguiar, Michael E. Tobar +2

By changing from a resonant multimode paradigm to a free mass paradigm for transducers in resonant mass gravitational wave detection, an array of six spheres can achieve a sensitiv…

gr-qc2007128 cited

Quantum Physics Exploring Gravity in the Outer Solar System: The Sagas Project

P. Wolf, Ch. J. Bordé, A. Clairon +52

We summarise the scientific and technological aspects of the SAGAS (Search for Anomalous Gravitation using Atomic Sensors) project, submitted to ESA in June 2007 in response to the…

gr-qc2006102 cited

Improved test of Lorentz Invariance in Electrodynamics using Rotating Cryogenic Sapphire Oscillators

Paul L. Stanwix, Michael E. Tobar, Peter Wolf +2

We present new results from our test of Lorentz invariance, which compares two orthogonal cryogenic sapphire microwave oscillators rotating in the lab. We have now acquired over 1…

gr-qc2006

Properties of gravitational waves in Cosmological General Relativity

John G. Hartnett, Michael E. Tobar

The 5D Cosmological General Relativity theory developed by Carmeli reproduces all of the results that have been successfully tested for Einstein's 4D theory. However the Carmeli th…

gr-qc2004

Whispering Gallery Resonators and Tests of Lorentz Invariance

Peter Wolf, Michael E. Tobar, Sebastien Bize +3

The frequencies of a cryogenic sapphire oscillator and a hydrogen maser are compared to set new constraints on a possible violation of Lorentz invariance. We give a detailed descri…

gr-qc2003

Tests of Lorentz Invariance Using a Microwave Resonator: An Update

P. Wolf, S. Bize, A. Clairon +3

The frequencies of a cryogenic sapphire oscillator and a hydrogen maser are compared to set new constraints on a possible violation of Lorentz invariance. We determine the variatio…