English

Efficient all-optical production of large $^6$Li quantum gases using D$_1$ gray-molasses cooling

Quantum Gases 2015-06-22 v1 Quantum Physics

Abstract

We use a gray molasses operating on the D1_1 atomic transition to produce degenerate quantum gases of 6^{6}Li with a large number of atoms. This sub-Doppler cooling phase allows us to lower the initial temperature of 109^9 atoms from 500 to 40 μ\muK in 2 ms. We observe that D1_1 cooling remains effective into a high-intensity infrared dipole trap where two-state mixtures are evaporated to reach the degenerate regime. We produce molecular Bose-Einstein condensates of up to 5×\times105^{5} molecules and weakly-interacting degenerate Fermi gases of 7×7\times105^{5} atoms at T/TF<0.1T/T_{F}<0.1 with a typical experimental duty cycle of 11 seconds.

Keywords

Cite

@article{arxiv.1406.4788,
  title  = {Efficient all-optical production of large $^6$Li quantum gases using D$_1$ gray-molasses cooling},
  author = {A. Burchianti and G. Valtolina and J. A. Seman and E. Pace and M. De Pas and M. Inguscio and M. Zaccanti and G. Roati},
  journal= {arXiv preprint arXiv:1406.4788},
  year   = {2015}
}

Comments

5 pages, 3 figures