most citedProbing Interactions between Ultracold Fermions

117 citations · 133 across the 2 of their papers we have counts for

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physics.atom-ph200916 cited

Spin-1/2 Optical Lattice Clock

N. D. Lemke, A. D. Ludlow, Z. W. Barber +7

We experimentally investigate an optical clock based on Yb () atoms confined in an optical lattice. We have evaluated all known frequency shifts to the clock transit…

physics.atom-ph2009117 cited

Probing Interactions between Ultracold Fermions

G. K. Campbell, M. M. Boyd, J. W. Thomsen +12

At ultracold temperatures, the Pauli exclusion principle suppresses collisions between identical fermions. This has motivated the development of atomic clocks using fermionic isoto…

physics.atom-ph200882 cited

Frequency evaluation of the doubly forbidden transition in bosonic Yb

N. Poli, Z. W. Barber, N. D. Lemke +11

We report an uncertainty evaluation of an optical lattice clock based on the transition in the bosonic isotope Yb by use of magnetically induced…

physics.atom-ph2008158 cited

Optical Lattice Induced Light Shifts in an Yb Atomic Clock

Z. W. Barber, J. E. Stalnaker, N. D. Lemke +6

We present an experimental study of the lattice induced light shifts on the 1S_0-3P_0 optical clock transition (v_clock~518 THz) in neutral ytterbium. The ``magic'' frequency, v_ma…

physics.atom-ph2008553 cited

Sr lattice clock at 1x10^{-16} fractional uncertainty by remote optical evaluation with a Ca clock

A. D. Ludlow, T. Zelevinsky, G. K. Campbell +16

Optical atomic clocks promise timekeeping at the highest precision and accuracy, owing to their high operating frequencies. Rigorous evaluations of these clocks require direct comp…