Test of the universality of free fall with atoms in different spin Orientations
arXiv:1503.00433 · doi:10.1103/PhysRevLett.117.023001
Abstract
We report a test of the universality of free fall (UFF) related to spin-gravity coupling effects by comparing the gravity acceleration of the Rb atoms in versus that in , where the corresponding spin orientations are opposite. A Mach-Zehnder-type atom interferometer is exploited to sequentially measure the free fall acceleration of the atoms in these two sublevels, and the resultant Etvs ratio determined by this work is . The interferometer using atoms in or is highly sensitive to magnetic field inhomogeneity, which limits the current experimental precision of our UFF test. The work here provides a stepping stone for future higher precision UFF test related to different spin orientations on atomic basis.
11pages,3 figures
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