Quantum entanglement of anyonic charges and emergent spacetime geometry

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초록

Intrinsically topologically ordered phases can host anyons. Here, we take the view that entanglement between anyons can give rise to an emergent geometry resembling Anti-de Sitter (AdS) space. We analyze the entanglement structure of fractionalized anyons using mutual information and interpret the results within this emergent geometric framework. As a concrete example, we consider pairs of e/2-charged semions that arise from instanton configurations in a disordered zigzag graphene nanoribbon. These fractional charges, located on opposite zigzag edges, show long-range quantum entanglement despite being spatially separated. We analyze the scale dependence of their entanglement and embed the ribbon into an AdS-like bulk geometry. In this setup, the entanglement structure defines minimal surfaces in the bulk, providing a geometric view of the edge correlations. This gives a holographic picture of fractionalized degrees of freedom in quasi-one-dimensional systems and shows how quantum entanglement can generate emergent geometry even without conformal symmetry.

키워드

nanoribbonsquantum entanglementAnti-de Sitter spacechiralityholographydifferential geometryGRAPHENE NANORIBBONSSOLITONS
제목
Quantum entanglement of anyonic charges and emergent spacetime geometry
저자
Le, Hoang-AnhLee, Hyun CheolYang, S. R. Eric
DOI
10.1088/1367-2630/ae3a0b
발행일
2026-01
유형
Article
저널명
New Journal of Physics
28
1

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