4.2 Review

Cooling and thermometry of atomic Fermi gases

Journal

PHYSICS-USPEKHI
Volume 59, Issue 11, Pages 1129-1153

Publisher

TURPION LTD
DOI: 10.3367/UFNe.2016.07.037873

Keywords

ultracold Fermi gases; Fermi Bose mixtures; superfluidity phenomena; atomic trapping; thermometry

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We review the status of cooling techniques aimed at achieving the deepest quantum degeneracy for atomic Fermi gases. We first discuss some physics motivations, providing a quantitative assessment of the need for deep quantum degeneracy in relevant physics cases, such as the search for unconventional superfluid states. Attention is then focused on the most widespread technique to reach deep quantum degeneracy for Fermi systems, sympathetic cooling of Bose Fermi mixtures, organizing the discussion according to the specific species involved. Various proposals to circumvent some of the limitations on achieving the deepest Fermi degeneracy, and their experimental realizations, are then reviewed. Finally, we discuss the extension of these techniques to optical lattices and the implementation of precision thermometry crucial to the understanding of the phase diagram of classical and quantum phase transitions in Fermi gases.

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