Deep laser cooling and efficient magnetic compression of molecules
Atomic Physics
2019-07-24 v2
Abstract
We introduce a scheme for deep laser cooling of molecules based on robust dark states at zero velocity. By simulating this scheme, we show it to be a widely applicable method that can reach the recoil limit or below. We demonstrate and characterise the method experimentally, reaching a temperature of 5.4(7) K. We solve a general problem of measuring low temperatures for large clouds by rotating the phase-space distribution and then directly imaging the complete velocity distribution. Using the same phase-space rotation method, we rapidly compress the cloud. Applying the cooling method a second time, we compress both the position and velocity distributions.
Keywords
Cite
@article{arxiv.1812.07926,
title = {Deep laser cooling and efficient magnetic compression of molecules},
author = {L. Caldwell and J. A. Devlin and H. J. Williams and N. J. Fitch and E. A. Hinds and B. E. Sauer and M. R. Tarbutt},
journal= {arXiv preprint arXiv:1812.07926},
year = {2019}
}
Comments
9 pages, 7 figures