Lattice Light Shift Evaluations In a Dual-Ensemble Yb Optical Lattice Clock
Abstract
In state-of-the-art optical lattice clocks, beyond-electric-dipole polarizability terms lead to a break-down of magic wavelength trapping. In this Letter, we report a novel approach to evaluate lattice light shifts, specifically addressing recent discrepancies in the atomic multipolarizability term between experimental techniques and theoretical calculations. We combine imaging and multi-ensemble techniques to evaluate lattice light shift atomic coefficients, leveraging comparisons in a dual-ensemble lattice clock to rapidly evaluate differential frequency shifts. Further, we demonstrate application of a running wave field to probe both the multipolarizability and hyperpolarizability coefficients, establishing a new technique for future lattice light shift evaluations.
Keywords
Cite
@article{arxiv.2409.10782,
title = {Lattice Light Shift Evaluations In a Dual-Ensemble Yb Optical Lattice Clock},
author = {Tobias Bothwell and Benjamin D. Hunt and Jacob L. Siegel and Youssef S. Hassan and Tanner Grogan and Takumi Kobayashi and Kurt Gibble and Sergey G. Porsev and Marianna S. Safronova and Roger C. Brown and Kyle Beloy and Andrew D. Ludlow},
journal= {arXiv preprint arXiv:2409.10782},
year = {2024}
}
Comments
17 pages, 6 figures