T. Matthey

Rf-induced persistent long-range ordered structures in two-species ion Coulomb crystals in a linear Paul trap

A. Mortensen [1], E. Nielsen [1], T. Matthey [1], M. Drewsen [1]

Abstract

We report on the observations of three-dimensional long-range ordered structures in the central $^{40}$Ca$^+$ ion component of $^{40}$Ca$^+$--$^{44}$Ca$^+$ two-species ion Coulomb crystals in a linear Paul trap. In contrast to long-range ordering previously observed in single species crystals, the structures observed are strikingly persistent and always of one specific type in one particular orientation. Molecular dynamics simulations strongly indicate that these characteristics are a hitherto unpredicted consequence of the co-axial cylindrical symmetry of the central ion component of the Coulomb crystal and the radio frequency quadrupole trapping field.

Observation of Three-dimensional Long-range Order in Smaller Ion Coulomb Crystals in an rf Trap

A. Mortensen [1], E. Nielsen [1], T. Matthey [1], M. Drewsen [1]

Abstract

Three-dimensional long-range ordered structures in smaller and near-spherically symmetric Coulomb crystals of ^{40}Ca^+ ions confined in a linear rf Paul trap have been observed when the number of ions exceeds ~1000 ions. This result is unexpected from ground state molecular dynamics (MD) simulations, but found to be in agreement with MD simulations of metastable ion configurations. Previously, three-dimensional long-range ordered structures have only been reported in Penning traps in systems of ~50,000 ions or more.