English

Analyzing the Rydberg-based omg architecture for $^{171}$Yb nuclear spins

Atomic Physics 2022-05-26 v3 Quantum Physics

Abstract

Neutral alkaline earth(-like) atoms have recently been employed in atomic arrays with individual readout, control, and high-fidelity Rydberg-mediated entanglement. This emerging platform offers a wide range of new quantum science applications that leverage the unique properties of such atoms: ultra-narrow optical "clock" transitions and isolated nuclear spins. Specifically, these properties offer an optical qubit ("o") as well as ground ("g") and metastable ("m") nuclear spin qubits, all within a single atom. We consider experimentally realistic control of this "omg" architecture and its coupling to Rydberg states for entanglement generation, focusing specifically on ytterbium-171 (171Yb^{171}\text{Yb}) with nuclear spin I=1/2I = 1/2. We analyze the SS-series Rydberg states of 171Yb^{171}\text{Yb}, described by the three spin-1/21/2 constituents (two electrons and the nucleus). We confirm that the F=3/2F = 3/2 manifold -- a unique spin configuration -- is well suited for entangling nuclear spin qubits. Further, we analyze the F=1/2F = 1/2 series -- described by two overlapping spin configurations -- using a multichannel quantum defect theory. We study the multilevel dynamics of the nuclear spin states when driving the clock or Rydberg transition with Rabi frequency Ωc=2π×200\Omega_\text{c} = 2 \pi \times 200 kHz or ΩR=2π×6\Omega_\text{R} = 2 \pi \times 6 MHz, respectively, finding that a modest magnetic field (200G\approx200\,\text{G}) and feasible laser polarization intensity purity (0.99\lesssim0.99) are sufficient for gate fidelities exceeding 0.99.

Keywords

Cite

@article{arxiv.2201.04083,
  title  = {Analyzing the Rydberg-based omg architecture for $^{171}$Yb nuclear spins},
  author = {Neville Chen and Lintao Li and William Huie and Mingkun Zhao and Ian Vetter and Chris H. Greene and Jacob P. Covey},
  journal= {arXiv preprint arXiv:2201.04083},
  year   = {2022}
}

Comments

N.C., L.L., and W.H. contributed equally

R2 v1 2026-06-24T08:46:45.647Z