Second Chern number of a quantum-simulated non-Abelian Yang monopole.
basic_science · Level V
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- Record sourced from PubMed, PMID 29954972.
- Also identified by DOI 10.1126/science.aam9031 and PMC identifier 6561486.
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Abstract
Topological order is often quantified in terms of Chern numbers, each of which classifies a topological singularity. Here, inspired by concepts from high-energy physics, we use quantum simulation based on the spin degrees of freedom of atomic Bose-Einstein condensates to characterize a singularity present in five-dimensional non-Abelian gauge theories-a Yang monopole. We quantify the monopole in terms of Chern numbers measured on enclosing manifolds: Whereas the well-known first Chern number vanishes, the second Chern number does not. By displacing the manifold, we induce and observe a topological transition, where the topology of the manifold changes to a trivial state.