Litcius/Paper detail

Synthetic Topological Vacua of Yang-Mills Fields in Bose-Einstein Condensates

Jiazhen Li, Cong-Jun Zou, Yan-Xiong Du, Qing-Xian Lv, Wei Huang, Zhen-Tao Liang, Dan-Wei Zhang, Hui Yan, Shanchao Zhang, Shi-Liang Zhu

2022Physical Review Letters11 citationsDOI

Abstract

Topological vacua are a family of degenerate ground states of Yang-Mills fields with zero field strength but nontrivial topological structures. They play a fundamental role in particle physics and quantum field theory, but have not yet been experimentally observed. Here we report the first theoretical proposal and experimental realization of synthetic topological vacua with a cloud of atomic Bose-Einstein condensates. Our setup provides a promising platform to demonstrate the fundamental concept that a vacuum, rather than being empty, has rich spatial structures. The Hamiltonian for the vacuum of topological number n=1 is synthesized and the related Hopf index is measured. The vacuum of topological number n=2 is also realized, and we find that vacua with different topological numbers have distinctive spin textures and Hopf links. Our Letter opens up opportunities for exploring topological vacua and related long-sought-after instantons in tabletop experiments.

Topics & Concepts

Bose–Einstein condensatePhysicsYang–Mills existence and mass gapTheoretical physicsQuantum electrodynamicsMathematical physicsQuantum mechanicsGauge theoryCold Atom Physics and Bose-Einstein CondensatesTopological Materials and Phenomena