paper

Penning-trap eigenfrequency measurements with optical radiofrequency detectors

arXiv:2308.14884 · doi:10.1103/PhysRevResearch.6.L012001

Abstract

We use an electric-dipole laser-driven transition to precisely measure the cyclotron-frequency ratios of the pairs Ca-Ca, Ca-Ca and Ca-Ca in a 7-tesla Penning trap. A single laser-cooled (~mK) ion serves, together with photon-counting and/or photon-imaging units, as a radiofrequency detector covering a broad-band frequency spectrum, in the present case from kHz to a few MHz. Such detectors (Ca) allow measuring extremely small forces, with measured normalized sensitivities down to yN and yN in the MHz and kHz regime, respectively. The direct determination of the ions' amplitudes makes a cyclotron-frequency measurement process more robust against inhomogeneities of the magnetic field and/or deviations of the electric quadrupole field due to mechanical imperfections of the trap.

6 pages, 3 figures

Penning-trap eigenfrequency measurements with optical radiofrequency detectors · wovepaper