arXiv · 1510.08144
Modified hyper-Ramsey methods for the elimination of probe shifts in optical clocks
Abstract
We develop a method of modified hyper-Ramsey spectroscopy in optical clocks, achieving complete immunity to the frequency shifts induced by the probing fields themselves. Using particular pulse sequences with tailored phases, frequencies, and durations, we can derive an error signal centered exactly at the unperturbed atomic resonance with a steep discriminant which is robust against variations in the probe shift. We experimentally investigate the scheme using the magnetically-induced $^1$S$_0- ^3$P$_0$ transition in $^{88}$Sr, demonstrating automatic suppression of a sizeable \num{2e-13} probe Stark shift to below \num{1e-16} even with very large errors in shift compensation.
Explore related subjects
Keep this discovery
R. Hobson, W. Bowden, S. A. King, P. E. G. Baird, I. R. Hill, P. Gill. 2015-11-03. Modified hyper-Ramsey methods for the elimination of probe shifts in optical clocks. https://doi.org/10.1103/physreva.93.010501
Cite the original work for its findings. Save a collection to share your selection of sources.