Direct Terrestrial Test of Lorentz Symmetry in Electrodynamics to 10
arXiv:1412.6954 · doi:10.1038/ncomms9174
Abstract
Lorentz symmetry is a foundational property of modern physics, underlying the standard model of particles and general relativity. It is anticipated that these two theories are low energy approximations of a single theory that is unified and consistent at the Planck scale. Many unifying proposals allow Lorentz symmetry to be broken, with observable effects appearing at Planck-suppressed levels; thus precision tests of Lorentz invariance are needed to assess and guide theoretical efforts. Here, we use ultra-stable oscillator frequency sources to perform a modern Michelson-Morley experiment and make the most precise direct terrestrial test to date of Lorentz symmetry for the photon, constraining Lorentz violating orientation-dependent relative frequency changes / to 9.210.7 (95 confidence interval). This order of magnitude improvement over previous Michelson-Morley experiments allows us to set comprehensive simultaneous bounds on nine boost and rotation anisotropies of the speed of light, finding no significant violations of Lorentz symmetry.
20 pages, 13 figures
References in corpus (14)
- Quantum Gravity at a Lifshitz Point
- Spectral Dimension of the Universe in Quantum Gravity at a Lifshitz Point
- Phenomenologically viable Lorentz-violating quantum gravity
- What Do We Know About Lorentz Invariance?
- Sensitive polarimetric search for relativity violations in gamma-ray bursts
- Rotating optical cavity experiment testing Lorentz invariance at the 10^{-17} level
- Relativity tests by complementary rotating Michelson-Morley experiments
- Test of Lorentz Invariance in Electrodynamics Using Rotating Cryogenic Sapphire Microwave Oscillators
- A Michelson-Morley Test of Lorentz Symmetry for Electrons
- Improved test of Lorentz Invariance in Electrodynamics using Rotating Cryogenic Sapphire Oscillators
- Testing Lorentz invariance by use of vacuum and matter filled cavity resonators
- Optical-cavity tests of higher-order Lorentz violation
- Hybrid Electron Spin Resonance and Whispering Gallery Mode Resonance Spectroscopy of Fe3+ in Sapphire
- Cavity Bounds on Higher-Order Lorentz-Violating Coefficients
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