English

A Coherent Quantum Annealer with Rydberg Atoms

Quantum Physics 2017-08-02 v1 Other Condensed Matter

Abstract

There is a significant ongoing effort in realizing quantum annealing with different physical platforms. The challenge is to achieve a fully programmable quantum device featuring coherent adiabatic quantum dynamics. Here we show that combining the well-developed quantum simulation toolbox for Rydberg atoms with the recently proposed Lechner-Hauke-Zoller~(LHZ) architecture allows one to build a prototype for a coherent adiabatic quantum computer with all-to-all Ising interactions and, therefore, a novel platform for quantum annealing. In LHZ a infinite-range spin-glass is mapped onto the low energy subspace of a spin-1/2 lattice gauge model with quasi-local 4-body parity constraints. This spin model can be emulated in a natural way with Rubidium and Cesium atoms in a bipartite optical lattice involving laser-dressed Rydberg-Rydberg interactions, which are several orders of magnitude larger than the relevant decoherence rates. This makes the exploration of coherent quantum enhanced optimization protocols accessible with state-of-the-art atomic physics experiments.

Keywords

Cite

@article{arxiv.1611.02594,
  title  = {A Coherent Quantum Annealer with Rydberg Atoms},
  author = {Alexander W. Glaetzle and Rick M. W. van Bijnen and Peter Zoller and Wolfgang Lechner},
  journal= {arXiv preprint arXiv:1611.02594},
  year   = {2017}
}
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