paper

Efficient ground-state cooling of large trapped-ion chains with an EIT tripod scheme

arXiv:2004.05190 · doi:10.1103/PhysRevLett.125.053001

Abstract

We report the electromagnetically-induced-transparency (EIT) cooling of a large trapped Yb ion chain to the quantum ground state. Unlike conventional EIT cooling, we engage a four-level tripod structure and achieve fast sub-Doppler cooling over all motional modes. We observe simultaneous ground-state cooling across the complete transverse mode spectrum of up to ions, occupying a bandwidth of over MHz. The cooling time is observed to be less than s, independent of the number of ions. Such efficient cooling across the entire spectrum is essential for high-fidelity quantum operations using trapped ion crystals for quantum simulators or quantum computers.

Main text: 4 pages, 4 figures; Supplement: 4 pages, 5 figures

Efficient ground-state cooling of large trapped-ion chains with an EIT tripod scheme · wovepaper