English

Observation of microscopic confinement dynamics by a tunable topological $\theta$-angle

Quantum Gases 2023-06-22 v1 High Energy Physics - Lattice High Energy Physics - Phenomenology Atomic Physics Quantum Physics

Abstract

The topological θ\theta-angle is central to the understanding of a plethora of phenomena in condensed matter and high-energy physics such as the strong CP problem, dynamical quantum topological phase transitions, and the confinement--deconfinement transition. Difficulties arise when probing the effects of the topological θ\theta-angle using classical methods, in particular through the appearance of a sign problem in numerical simulations. Quantum simulators offer a powerful alternate venue for realizing the θ\theta-angle, which has hitherto remained an outstanding challenge due to the difficulty of introducing a dynamical electric field in the experiment. Here, we report on the experimental realization of a tunable topological θ\theta-angle in a Bose--Hubbard gauge-theory quantum simulator, implemented through a tilted superlattice potential that induces an effective background electric field. We demonstrate the rich physics due to this angle by the direct observation of the confinement--deconfinement transition of (1+1)(1+1)-dimensional quantum electrodynamics. Using an atomic-precision quantum gas microscope, we distinguish between the confined and deconfined phases by monitoring the real-time evolution of particle--antiparticle pairs, which exhibit constrained (ballistic) propagation for a finite (vanishing) deviation of the θ\theta-angle from π\pi. Our work provides a major step forward in the realization of topological terms on modern quantum simulators, and the exploration of rich physics they have been theorized to entail.

Keywords

Cite

@article{arxiv.2306.11794,
  title  = {Observation of microscopic confinement dynamics by a tunable topological $\theta$-angle},
  author = {Wei-Yong Zhang and Ying Liu and Yanting Cheng and Ming-Gen He and Han-Yi Wang and Tian-Yi Wang and Zi-Hang Zhu and Guo-Xian Su and Zhao-Yu Zhou and Yong-Guang Zheng and Hui Sun and Bing Yang and Philipp Hauke and Wei Zheng and Jad C. Halimeh and Zhen-Sheng Yuan and Jian-Wei Pan},
  journal= {arXiv preprint arXiv:2306.11794},
  year   = {2023}
}

Comments

$7+7$ pages, $4+7$ figures, $1+0$ table