Hyperfine structure of laser-cooling transitions in fermionic erbium-167
arXiv:1304.3326 · doi:10.1103/PhysRevA.88.032508
Abstract
We have measured and analyzed the hyperfine structure of two lines, one at 583nm and one at 401nm, of the only stable fermionic isotope of atomic erbium as well as determined its isotope shift relative to the four most-abundant bosonic isotopes. Our work focuses on the J->J+1 laser cooling transitions from the [Xe] 4f12 6s2 (3H6) ground state to two levels of the excited [Xe] 4f12 6s6p configuration, which are of major interest for experiments on quantum degenerate dipolar Fermi gases. From a fit to the observed spectra of the strong optical transition at 401nm we find that the magnetic dipole and electric quadrupole hyperfine constants for the excited state are Ae/h=-100.1(3)MHz and Be/h=-3079(30)MHz, respectively. The hyperfine spectrum of the narrow transition at 583nm, was previously observed and accurate Ae and Be coefficients are available. A simulated spectrum based on these coefficients agrees well with our measurements. We have also determined the hyperfine constants using relativistic configuration-interaction ab initio calculations. The agreement between the ab initio and fitted data for the ground state is better than 0.1%, while for the two excited states the agreement is 1% and 11% for the Ae and Be constants, respectively.
References in corpus (13)
- Bose-Einstein Condensation of Erbium
- Condensed Matter Theory of Dipolar Quantum Gases
- Quantum degenerate dipolar Fermi gas
- Degenerate Fermi Gases of Ytterbium
- Quantum computing with alkaline earth atoms
- Mott Insulators of Ultracold Fermionic Alkaline Earth Atoms: Underconstrained Magnetism and Chiral Spin Liquid
- Modulation transfer spectroscopy in atomic rubidium
- Alkaline-Earth-Metal Atoms as Few-Qubit Quantum Registers
- Bose-Einstein condensation of alkaline earth atoms: {Ca}
- Magneto-Optical Trap for Thulium Atoms
- Dysprosium magneto-optical traps
- Quantum magnetism of ultra-cold fermion systems with the symplectic symmetry
- Entanglement of group-II-like atoms with fast measurement for quantum information processing
Cited by in corpus (17)
- Reaching Fermi degeneracy via universal dipolar scattering
- Dipolar and spinor bosonic systems
- Phase structure of mass- and spin-imbalanced unitary Fermi gases
- Anisotropic optical trapping of ultracold erbium atoms
- Surmounting the sign problem in non-relativistic calculations: a case study with mass-imbalanced fermions
- Zero-temperature equation of state of mass-imbalanced resonant Fermi gases
- Pairing patterns in one-dimensional spin- and mass-imbalanced Fermi gases
- Spectroscopy of Rydberg States in Erbium using Electromagnetically Induced Transparency
- Quantum chaos in Feshbach resonances of the ErYb system
- Thermal transitions, pseudogap behavior and BCS-BEC crossover in Fermi-Fermi mixtures
- Pauli limited d-wave superconductors: Quantum breached pair phase and thermal transitions
- High-resolution laser system for the S3-Low Energy Branch
- Adiabatic state preparation of stripe phases with strongly magnetic atoms
- Ferromagnetic spin-orbital liquid of dipolar fermions in zigzag lattices
- In-medium bound-state formation and inhomogeneous condensation in Fermi gases in a hard-wall box
- Polarization spectroscopy of atomic erbium in a hollow cathode lamp
- Dissipationless tune-out trapping for a lanthanide-alkali quantum gas mixture