English

Simulating two-dimensional dynamics within a large-size atomic spin

Quantum Gases 2022-01-19 v1

Abstract

Encoding a dimension in the internal degree of freedom of an atom provides an interesting tool for quantum simulation, facilitating the realization of artificial gauge fields. We propose an extension of the synthetic dimension toolbox, making it possible to encode two dimensions within a large atomic spin. The protocol combines first- and second-order spin couplings, such that the spin projection mm and the remainder r=mr=m (mod 3) of its Euclidian division by 3 act as orthogonal coordinates on a synthetic cylinder. It is suited for an implementation with lanthanide atoms, which feature a large electronic spin and narrow optical transitions for applying the required spin couplings. This method is useful for simulating geometries with periodic boundary conditions, and engineering various types of topological systems evolving in high dimensions.

Keywords

Cite

@article{arxiv.2110.05269,
  title  = {Simulating two-dimensional dynamics within a large-size atomic spin},
  author = {Aurélien Fabre and Jean-Baptiste Bouhiron and Tanish Satoor and Raphael Lopes and Sylvain Nascimbene},
  journal= {arXiv preprint arXiv:2110.05269},
  year   = {2022}
}

Comments

7 pages, 4 figures