English

Testing Lorentz Invariance by Comparing Light Propagation in Vacuum and Matter

Instrumentation and Detectors 2017-08-23 v2 High Energy Physics - Phenomenology Optics

Abstract

We present a Michelson-Morley type experiment for testing the isotropy of the speed of light in vacuum and matter. The experiment compares the resonance frequency of a monolithic optical sapphire resonator with the resonance frequency of an orthogonal evacuated optical cavity made of fused silica while the whole setup is rotated on an air bearing turntable once every 45 s. Preliminary results yield an upper limit for the anisotropy of the speed of light in matter (sapphire) of \Delta c/c < 4x10^(-15), limited by the frequency stability of the sapphire resonator operated at room temperature. Work to increase the measurement sensitivity by more than one order of magnitude by cooling down the sapphire resonator to liquid helium temperatures (LHe) is currently under way.

Keywords

Cite

@article{arxiv.1008.1205,
  title  = {Testing Lorentz Invariance by Comparing Light Propagation in Vacuum and Matter},
  author = {M. Nagel and K. Möhle and K. Döringshoff and S. Herrmann and A. Senger and E. V. Kovalchuk and A. Peters},
  journal= {arXiv preprint arXiv:1008.1205},
  year   = {2017}
}

Comments

Presented at the Fifth Meeting on CPT and Lorentz Symmetry, Bloomington, Indiana, June 28-July 2, 2010

R2 v1 2026-06-21T15:57:55.975Z