English

Engineering and harnessing giant atoms in high-dimensional baths: a cold atoms' implementation

Quantum Physics 2019-05-29 v2 Quantum Gases Optics

Abstract

Emitters coupled simultaneously to distant positions of a photonic bath, the so-called giant atoms, represent a new paradigm in quantum optics. When coupled to one-dimensional baths, as recently implemented with transmission lines or SAW waveguides, they lead to striking effects such as chiral emission or decoherence-free atomic interactions. Here, we show how to create giant atoms in dynamical state-dependent optical lattices, which offers the possibility of coupling them to structured baths in arbitrary dimensions. This opens up new avenues to a variety of phenomena and opportunities for quantum simulation. In particular, we show how to engineer unconventional radiation patterns, like multi-directional chiral emission, as well as collective interactions that can be used to simulate non-equilibrium many-body dynamics with no analogue in other setups. Besides, the recipes we provide to harness giant atoms in high dimensions can be exported to other platforms where such non-local couplings can be engineered.

Keywords

Cite

@article{arxiv.1901.00289,
  title  = {Engineering and harnessing giant atoms in high-dimensional baths: a cold atoms' implementation},
  author = {A. González-Tudela and C. Sánchez Muñoz and J. I. Cirac},
  journal= {arXiv preprint arXiv:1901.00289},
  year   = {2019}
}

Comments

9 pages, 5 figures. Title changed to accommodate to the new focus of the main text. Several typos corrected

R2 v1 2026-06-23T07:01:08.245Z