Continuous Raman sideband cooling beyond the Lamb-Dicke Regime in a trapped ion chain
Abstract
We report continuous Raman sideband cooling (CRSC) of a long ion chain to the motional ground state beyond the Lamb-Dicke (LD) regime. By driving multiple sideband transitions simultaneously, we show that nearly all axial modes of a 24-ion chain are cooled to the ground state, with an LD parameter as large as , spanning a frequency bandwidth of 4 MHz. Compared to traditional ground-state cooling methods such as pulsed sideband cooling or electromagnetic-induced-transparency (EIT) cooling, our method offers two key advantages: robustness to timing errors; and an ultra-wide bandwidth unlimited by the number of ions. This technique contributes as a crucial step for large-scale quantum information processing with linear ion chains and higher dimensions alike, and can be readily generalized to other atomic and molecular systems.
Keywords
Cite
@article{arxiv.2208.07394,
title = {Continuous Raman sideband cooling beyond the Lamb-Dicke Regime in a trapped ion chain},
author = {Qiming Wu and Yue Shi and Jiehang Zhang},
journal= {arXiv preprint arXiv:2208.07394},
year = {2022}
}
Comments
6 pages, 4 figures