Localized magnetic moments with tunable spin exchange in a gas of ultracold fermions

We report on the experimental realization of a state-dependent lattice for a two-orbital fermionic quantum gas with strong interorbital spin exchange. In our state-dependent lattice, the ground and metastable excited electronic states of \(^{173}\)Yb take the roles of itinerant and localized magneti...

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Veröffentlicht in:arXiv.org 2018-04
Hauptverfasser: Riegger, Luis, Nelson Darkwah Oppong, Höfer, Moritz, Diogo Rio Fernandes, Bloch, Immanuel, Fölling, Simon
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Sprache:eng
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Zusammenfassung:We report on the experimental realization of a state-dependent lattice for a two-orbital fermionic quantum gas with strong interorbital spin exchange. In our state-dependent lattice, the ground and metastable excited electronic states of \(^{173}\)Yb take the roles of itinerant and localized magnetic moments, respectively. Repulsive on-site interactions in conjunction with the tunnel mobility lead to spin exchange between mobile and localized particles, modeling the coupling term in the well-known Kondo Hamiltonian. In addition, we find that this exchange process can be tuned resonantly by varying the on-site confinement. We attribute this to a resonant coupling to center-of-mass excited bound states of one interorbital scattering channel.
ISSN:2331-8422
DOI:10.48550/arxiv.1708.03810