J. L. Sørensen

Doppler cooling of calcium ions using a dipole-forbidden transition

R. J. Hendricks, J. L. Sørensen, C. Champenois, M. Knoop, M. Drewsen

Abstract

Doppler cooling of calcium ions has been experimentally demonstrated using the S1/2 to D5/2 dipole-forbidden transition. Scattering forces and fluorescence levels a factor of 5 smaller than for usual Doppler cooling on the dipole allowed S1/2 to P1/2 transition have been achieved. Since the light scattered from the ions can be monitored at (violet) wavelengths that are very different from the excitation wavelengths, single ions can be detected with an essentially zero background level. This, as well as other features of the cooling scheme, can be extremely valuable for ion trap based quantum information processing.

Non-Destructive Identification of Cold and Extremely Localized Single Molecular Ions

M. Drewsen [1], A. Mortensen [1], R. Martinussen [1], P. Staanum [1], J. L. Sørensen

Abstract

A simple and non-destructive method for identification of a single molecular ion sympathetically cooled by a single laser cooled atomic ion in a linear Paul trap is demonstrated. The technique is based on a precise determination of the molecular ion mass through a measurement of the eigenfrequency of a common motional mode of the two ions. The demonstrated mass resolution is sufficiently high that a particular molecular ion species can be distinguished from other equally charged atomic or molecular ions having the same total number of nucleons.