Ion-neutral sympathetic cooling in a hybrid linear rf Paul and magneto-optical trap
arXiv:1207.1810 · doi:10.1103/PhysRevA.86.033408
Abstract
Long range polarization forces between ions and neutral atoms result in large elastic scattering cross sections, e.g., 10^6 a.u. for Na+ on Na or Ca+ on Na at cold and ultracold temperatures. This suggests that a hybrid ion-neutral trap should offer a general means for significant sympathetic cooling of atomic or molecular ions. We present SIMION 7.0 simulation results concerning the advantages and limitations of sympathetic cooling within a hybrid trap apparatus, consisting of a linear rf Paul trap concentric with a Na magneto-optical trap (MOT). This paper explores the impact of various heating mechanisms on the hybrid system and how parameters related to the MOT, Paul trap, number of ions, and ion species affect the efficiency of the sympathetic cooling.
References in corpus (5)
Cited by in corpus (5)
- Blue-sky bifurcation of ion energies and the limits of neutral-gas sympathetic cooling of trapped ions
- Measurement of low-energy Na^+ -- Na total collision rate in an ion--neutral hybrid trap
- Rotational state-changing collisions between N and Rb at low energies
- Interactions of Ions and Ultracold Neutral Atom Ensembles in Composite Optical Dipole Traps: Developments and Perspectives
- A versatile apparatus for simultaneous trapping of multiple species of ultracold atoms and ions to enable studies of low energy collisions and cold chemistry