Measurement and extinction of vector light shifts using interferometry of spinor condensates
Abstract
We use differential Ramsey interferometry of ultracold atoms to characterize the vector light shift (VLS) from a far-off resonance optical dipole trap at . The VLS manifests as a `fictitious' magnetic field, which we perceive as a change in the Larmor frequency of two spinor condensates exposed to different intensities of elliptically polarized light. We use our measurement scheme to diagnose the light-induced magnetic field and suppress it to of its maximum value, by making the trapping light linearly polarized with a quarter-wave plate in each beam. Our sensitive measurement of the VLS-induced field demonstrates high-precision, in-vacuo interferometric polarimetry of dipole trapping light and can be adapted to measure vector shifts from other lasers, advancing the application of optically trapped atoms to precision metrology.
Keywords
Cite
@article{arxiv.1607.06898,
title = {Measurement and extinction of vector light shifts using interferometry of spinor condensates},
author = {A. A. Wood and L. D. Turner and R. P. Anderson},
journal= {arXiv preprint arXiv:1607.06898},
year = {2016}
}
Comments
12 pages, 6 figures