Blue-detuned magneto-optical trap
arXiv:1712.05002 · doi:10.1103/PhysRevLett.120.083201
Abstract
We present the properties and advantages of a new magneto-optical trap (MOT) where blue-detuned light drives `type-II' transitions that have dark ground states. Using Rb, we reach a radiation-pressure-limited density exceeding cm and a temperature below 30K. The phase-space density is higher than in normal atomic MOTs, and a million times higher than comparable red-detuned type-II MOTs, making it particularly attractive for molecular MOTs which rely on type-II transitions. The loss of atoms from the trap is dominated by ultracold collisions between Rb atoms. For typical trapping conditions, we measure a loss rate of cms.