Posted

Luca Spagnoli, Alessandro Roggero, Nathan Wiebe (Feb 25 2026).
Abstract: In this work we extend the connection between Quantum Error Correction (QEC) and Lattice Gauge Theories (LGTs) by showing that a ZN\mathbb{Z}_N gauge theory with prime dimension NN coupled to dynamical matter can be expressed as a qudit stabilizer code. Using the stabilizer formalism we show how to formulate an exact mapping of the encoded ZN\mathbb{Z}_N gauge theory onto two different bosonic models, uncovering a logical duality generated by error correction itself. From this perspective, quantum error correction provides a unifying language to expose dual descriptions of lattice gauge theories. In addition, we generalize earlier Z2\mathbb{Z}_2 constructions on qubits to ZN\mathbb{Z}_N on NN-level qudits and demonstrate how universal fault-tolerant gates can be implemented via state injection between compatible qudit codes.

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