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- W255232497 abstract "Using an effective field theory we describe the low energy bosonic excitations in a three dimensional ultra-cold mixture of spin-1 bosons and spin-1/2 fermions. We establish an interesting fermionic excitation induced generic damping of the usual undamped long wavelength bosonic collective Goldstone modes. Two states with bosons forming either a ferromagnetic or polar superfluid are studied. The linear dispersion of the bosonic Bogoliubov excitations is preserved with a renormalized sound velocity. For the polar superfluid we find both gapless modes (density and spin) are damped, whereas in the ferromagnetic superfluid we find the density (spin) mode is (not) damped. We argue quite generally that this holds for any mixture of bosons and fermions that are coupled through at least a density-density interaction. We discuss the implications of our many-body interaction results for experiments on Bose-Fermi mixtures." @default.
- W255232497 created "2016-06-24" @default.
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- W255232497 date "2015-06-04" @default.
- W255232497 modified "2023-10-16" @default.
- W255232497 title "Damping of Long-Wavelength Collective Modes in Spinor Bose-Fermi Mixtures" @default.
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- W255232497 doi "https://doi.org/10.1103/physrevlett.114.225303" @default.
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