English

Measuring the Chern-Simons invariant in quantum gases

Quantum Gases 2025-09-09 v1 Atomic Physics

Abstract

Chern-Simons (CS) invariant is a fundamental topological invariant describing the topological invariance of 3D space based on the Chern-Simons field theory. To date, direct measurement of the CS invariant in a physical system remains elusive. %to be elusive. Here, the CS invariant is experimentally measured by quenching a 2D optical Raman lattice with 1/2 spin in ultracold atoms. With a recently developed Bloch state tomography, we measure the expectation values of three Pauli matrices in 2D quasi-momentum space plus 1D time [(2+1)D], and then respectively extract the Berry curvature and the corresponding Berry connection. By integrating the product of these two quantities, we obtain the CS invariants near ±1\pm 1 and 0, which are consistent with theoretical predictions. We also observe transitions among these values, which indicates the change of the topology of the quantum state in (2+1)D quantum dynamics.

Keywords

Cite

@article{arxiv.2509.05774,
  title  = {Measuring the Chern-Simons invariant in quantum gases},
  author = {Chang-Rui Yi and Jinlong Yu and Huan Yuan and Xin Chen and Jia-Yu Guo and Jinyi Zhang and Shuai Chen and Jian-Wei Pan},
  journal= {arXiv preprint arXiv:2509.05774},
  year   = {2025}
}