Physical review. A/Physical review, A · 2018 · 38 citations · 41 references
EngineeringNuclear PhysicsSpin SystemsMagnetic ResonanceQuantum Spin IceSpintronic MaterialSpin DynamicSpin PhenomenonSpin-polarized Atomic BathQuantum MaterialsUltracold AtomSpin DynamicsSingle Ion-spin ImpurityQuantum MatterQuantum SciencePhysicsAtomic PhysicsSpin Impurity AtomsCold CloudQuantum MagnetismSpintronicsNatural SciencesApplied PhysicsCondensed Matter PhysicsDynamic Nuclear Polarization
We report on observations of spin dynamics in single ${\mathrm{Yb}}^{+}$ ions immersed in a cold cloud of spin-polarized $^{6}\mathrm{Li}$ atoms. This species combination has been proposed to be the most suitable system to reach the quantum regime in atom-ion experiments. For $^{174}\mathrm{Yb}^{+}$, we find that the atomic bath polarizes the spin of the ion by 93(4)% after a few Langevin collisions, pointing to strong spin-exchange rates. For the hyperfine ground states of $^{171}\mathrm{Yb}^{+}$, we also find strong rates towards spin polarization. However, relaxation towards the $F=0$ ground state occurs after 7.7(1.5) Langevin collisions. We investigate spin impurity atoms as a possible source of apparent spin-relaxation leading us to interpret the observed spin-relaxation rates as an upper limit. Using ab initio electronic structure and quantum scattering calculations, we explain the observed rates and analyze their implications for the possible observation of Feshbach resonances between atoms and ions once the quantum regime is reached.
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