English

Anomalous momentum diffusion in a dissipative many-body system

Quantum Gases 2019-12-17 v1

Abstract

Decoherence is ubiquitous in quantum physics, from the conceptual foundations to quantum information processing or quantum technologies, where it is a threat that must be countered. While decoherence has been extensively studied for simple, well-isolated systems such as single atoms or ions, much less is known for many-body systems where inter-particle correlations and interactions can drastically alter the dissipative dynamics. Here we report an experimental study of how spontaneous emission destroys the spatial coherence of a gas of strongly interacting bosons in an optical lattice. Instead of the standard momentum diffusion expected for independent atoms, we observe an anomalous sub-diffusive expansion, associated with a universal slowing down 1/t1/2\propto 1/t^{1/2} of the decoherence dynamics. This algebraic decay reflects the emergence of slowly-relaxing many-body states, akin to sub-radiant states of many excited emitters. These results, supported by theoretical predictions, provide an important benchmark in the understanding of open many-body systems.

Keywords

Cite

@article{arxiv.1905.04808,
  title  = {Anomalous momentum diffusion in a dissipative many-body system},
  author = {Raphaël Bouganne and Manel Bosch Aguilera and Alexis Ghermaoui and Jérôme Beugnon and Fabrice Gerbier},
  journal= {arXiv preprint arXiv:1905.04808},
  year   = {2019}
}

Comments

Supplementary material available as ancillary file

R2 v1 2026-06-23T09:04:14.450Z