arXiv · 1004.1076
Probing the FFLO phase by double occupancy modulation spectroscopy
Abstract
We propose here that for a spin-imbalanced two-component attractive Fermi gas loaded in a 1D optical lattice in presence of an harmonic confining potential, the observation of the change in the double occupancy after a lattice depth modulation can provide clear evidence of the Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) phase. Simulating the time evolution of the system, we can characterize the double occupancy spectrum for different initial conditions, relating its features to the FFLO wavevector $q$. In particular, the narrowing of the width of the spectrum can be related, through Bethe-ansatz equations in the strongly interacting limit, to the FFLO wavevector $q$.
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A. Korolyuk, F. Massel, P. Törmä. 2010-04-07. Probing the FFLO phase by double occupancy modulation spectroscopy. https://doi.org/10.1103/physrevlett.104.236402
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