Analysis of collision shift assessments in ion-based clocks
Abstract
We consider back-ground gas collision shifts in ion-based clocks. We give both a classical and quantum description of a collision between an ion and a polarizable particle with a simple hard-sphere repulsion. Both descriptions give consistent results, which shows that a collision shift bound is determined by the classical Langevin collision rate reduced by a readily calculated factor describing the decoupling of the clock laser from the ion due to the recoil motion. We also show that the result holds when using a more general Lennard-Jones potential to describe the interaction between the ion and its collision partner. This leads to a simple bound for the collision shift applicable to any single ion clock without resorting to large-scale Monte-Carlo simulations or determination of molecular potential energy curves describing the collision. It also provides a relatively straightforward means to measure the relevant collision rate.
Keywords
Cite
@article{arxiv.2512.05474,
title = {Analysis of collision shift assessments in ion-based clocks},
author = {M. D. Barrett and K. J. Arnold},
journal= {arXiv preprint arXiv:2512.05474},
year = {2026}
}
Comments
21 pages, 11 figs