Improvement of laser cooling of ions in a Penning trap by use of the axialization technique
Hebe Powell, S.R. de Echaniz, E. S. Phillips, D. M. Segal, Richard Claude Thompson · Journal of Physics B Atomic Molecular and Optical Physics · 2003
We report a study of the axialization and laser cooling of single ions and small clouds of ions in a Penning trap. A weak radiofrequency (rf) signal applied to a segmented ring electrode couples the magnetron motion to the cyclotron motion, which results in improved laser cooling of the magnetron motion. This allows us to approach the trapping conditions of a Paul trap, but without any micromotion. Using an ICCD camera we show that the motion of a single ion can be confined to dimensions of the order of 20 µm or less. We have measured increased magnetron cooling rates for clouds of a few ions, using an rf-photon correlation technique. For certain laser cooling conditions, the magnetron motion of the centre of mass of the cloud grows and stabilizes at a large value. This results in the ions orbiting the centre of the trap together in a small cloud, as confirmed by photon–photon correlation measurements.