Observation of two-orbital spin-exchange interactions with ultracold SU(N)-symmetric fermions
arXiv:1403.4761 · doi:10.1038/nphys3061
Abstract
We report on the direct observation of spin-exchanging interactions in a two-orbital SU(N)-symmetric quantum gas of ytterbium in an optical lattice. The two orbital states are represented by two different (meta-)stable electronic configurations of fermionic Yb-173. A strong spin-exchange between particles in the two separate orbitals is mediated by the contact interaction between atoms, which we characterize by clock shift spectroscopy in a 3D optical lattice. We find the system to be SU(N)-symmetric within our measurement precision and characterize all relevant scattering channels for atom pairs in combinations of the ground and the excited state. Elastic scattering between the orbitals is dominated by the antisymmetric channel, which leads to the strong spin-exchange coupling. The exchange process is directly observed, by characterizing the dynamic equilibration of spin imbalances between two large ensembles in the two orbital states, as well as indirectly in atom pairs via interaction shift spectroscopy in a 3D lattice. The realization of a stable SU(N)-symmetric two-orbital Hubbard Hamiltonian opens the route towards experimental quantum simulation of condensed-matter models based on orbital interactions, such as the Kondo lattice model.
Correction: In the original version of this preprint the assignment of states with symmetric electronic wavefunction (|eg+>) and with antisymmetric electronic wavefunction (|eg->) to the observed spectral lines was inverted. This has been corrected in the current version. The results of the paper remain unchanged, with the exchange coupling being inverted to a ferromagnetic exchange
References in corpus (16)
- Quantum Criticality in Heavy Fermion Metals
- A one-dimensional liquid of fermions with tunable spin
- Controlled exchange interaction between pairs of neutral atoms in an optical lattice
- Spectroscopic observation of SU(N)-symmetric interactions in Sr orbital magnetism
- An SU(N) Mott insulator of an atomic Fermi gas realized by large-spin Pomeranchuk cooling
- Ultracold fermions and the SU(N) Hubbard model
- Atomic Quantum Simulation of U(N) and SU(N) Non-Abelian Lattice Gauge Theories
- Ultracold Gases of Ytterbium: Ferromagnetism and Mott States in an SU(6) Fermi System
- Quantum computing with alkaline earth atoms
- Mott Insulators of Ultracold Fermionic Alkaline Earth Atoms: Underconstrained Magnetism and Chiral Spin Liquid
- Two-color photoassociation spectroscopy of ytterbium atoms and the precise determinations of s-wave scattering lengths
- Nuclear Spin Effects in Optical Lattice Clocks
- Optical Lattice Induced Light Shifts in an Yb Atomic Clock
- Optical atomic coherence at the one-second time scale
- Alkaline-Earth-Metal Atoms as Few-Qubit Quantum Registers
- Inelastic Collisions in Optically Trapped Ultracold Metastable Ytterbium
Cited by in corpus (32)
- Systematic evaluation of an atomic clock at 2e-18 total uncertainty
- Ultracold Fermi Gases with Emergent SU(N) Symmetry
- Hyperpolarizability and operational magic wavelength in an optical lattice clock
- Quantum correlations and entanglement in far-from-equilibrium spin systems
- Observation of coherent multiorbital polarons in a two-dimensional Fermi gas
- Quantum simulation of non-trivial topology
- Coherent magnon optics in a ferromagnetic spinor Bose-Einstein condensate
- Role of atoms in atomic gravitational-wave detectors
- Core-Shell Magneto-Optical Trap for Alkaline-Earth-Metal-Like Atoms
- Phase diagrams of one-dimensional half-filled two-orbital SU(N) cold fermions systems
- Quantum Monte Carlo simulation of thermodynamic properties of SU(2N) ultracold fermions in optical lattices
- Clock spectroscopy of interacting bosons in deep optical lattices
- State-dependent interactions in ultracold Yb probed by optical clock spectroscopy
- Enhancing Kondo Coupling in Alkaline-Earth Atomic Gases with Confinement-induced Resonances in Mixed Dimensions
- Variational Monte-Carlo investigation of SU() Heisenberg chains
- Spiral spin textures of bosonic Mott insulator with SU(3) spin-orbit coupling
- Polarons and Molecules in a Fermi Gas with Orbital Feshbach Resonance
- Exact diagonalization of Heisenberg and AKLT chains using the full symmetry
- Doppler Spectroscopy of an Ytterbium Bose-Einstein Condensate on the Clock Transition
- Breaking of SU(4) symmetry and interplay between strongly correlated phases in the Hubbard model
- Two-leg SU(2n) spin ladder: A low-energy effective field theory approach
- Crossover from conventional to inverse indirect magnetic exchange in the depleted Anderson lattice
- Quantum Defect Theory for Orbital Feshbach Resonance
- Exotic pairing in 1D spin-3/2 atomic gases with symmetry
- Interaction-induced exotic vortex states in an optical lattice clock with spin-orbit coupling
- Sum rules for spin- quantum gases in states with well-defined spins: spin-independent interactions and spin-dependent external fields
- Stabilization of the chiral phase of the SU() Heisenberg model on the honeycomb lattice with particles per site for larger than 1
- The Symplectic Fermi Liquid and its realization in cold atomic systems
- Projective symmetry group classification of parafermion spin liquids on a honeycomb lattice
- Cooperation of different exchange mechanisms in confined magnetic systems
- Cyclotron Dynamics of a Kondo Singlet in a Spin-Orbit-Coupled Alkaline-Earth Atomic Gas
- Topological Color-Hall Insulators: SU(3) Fermions in Optical Lattices