arXiv:hep-ph/0506074·v3·High Energy Physics — Phenomenology
Test of Lorentz Invariance in Electrodynamics Using Rotating Cryogenic Sapphire Microwave Oscillators
Paul L. Stanwix🇦🇺 · Michael E. Tobar🇦🇺 · Peter Wolf🇫🇷 · Mohamad Susli🇦🇺 · Clayton R. Locke🇦🇺 · Eugene N. Ivanov🇦🇺 · John Winterflood🇦🇺 · Frank van Kann🇦🇺
Abstract
We present the first results from a rotating Michelson-Morley experiment that uses two orthogonally orientated cryogenic sapphire resonator-oscillators operating in whispering gallery modes near 10 GHz. The experiment is used to test for violations of Lorentz Invariance in the frame-work of the photon sector of the Standard Model Extension (SME), as well as the isotropy term of the Robertson-Mansouri-Sexl (RMS) framework. In the SME we set a new bound on the previously unmeasured component of , and set more stringent bounds by up to a factor of 7 on seven other components. In the RMS a more stringent bound of on the isotropy parameter, is set, which is more than a factor of 7 improvement. More detailed description of the experiment and calculations can be found in: hep-ph/0506200
Comments: Final published version, 4 pages, references added