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R. E. Stoner

Publications and source records attributed to R. E. Stoner.

5 recordsLinked to original sources

Bound on Lorentz- and CPT-Violating Boost Effects for the Neutron

A search for an annual variation of a daily sidereal modulation of the frequency difference between co-located ${}^{129}$Xe and ${}^{3}$He Zeeman masers sets a stringent limit on boost-dependent Lorentz and CPT violation involving the neutron, consistent with no effect at the level of 150 nHz. In the framework of the general Standard-Model Extension, the present result provides the first clean test for the fermion sector of the symmetry of spacetime under boost transformations at a level of $10^{-27}$ GeV.

physics.atom-ph↗

Testing Lorentz and CPT symmetry with hydrogen masers

We present details from a recent test of Lorentz and CPT symmetry using hydrogen masers. We have placed a new limit on Lorentz and CPT violation of the proton in terms of a recent standard model extension by placing a bound on sidereal variation of the F = 1 Zeeman frequency in hydrogen. Here, the theoretical standard model extension is reviewed. The operating principles of the maser and the double resonance technique used to measure the Zeeman frequency are discussed. The characterization of systematic effects is described, and the method of data analysis is presented. We compare our result to other recent experiments, and discuss potential steps to improve our measurement.

physics.atom-ph↗

Limit on Lorentz and CPT Violation of the Proton Using a Hydrogen Maser

We present a new measurement constraining Lorentz and CPT violation of the proton using a hydrogen maser double resonance technique. A search for hydrogen Zeeman frequency variations with a period of the sidereal day (23.93 h) sets a clean limit on violation of Lorentz and CPT symmetry of the proton at the 10^{-27} GeV level.

physics.atom-ph↗

Measurement of the 21Ne Zeeman frequency shift due to Rb-21Ne collisions

We compared the frequency shift of the 21Ne Zeeman resonance induced by polarized Rb vapor to the shift induced in the 3He Zeeman resonance. The 3He/Rb shift has recently been measured with high precision, permitting the conversion of our differential measurement to an absolute value for the 21Ne/Rb shift. We report a value of K = 31.8 +/- 2.8 for the Rb/21Ne enhancement factor at a temperature of 124.8 +/- 1.9 C. We propose high-precision differential contact shift measurements, the absolute accuracy of which would be limited by the error in the 3He contact shift.

physics.atom-ph↗