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Information-theoretic principle of emergent 1-form symmetries

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arxiv 2502.17572 v4 pith:ZE5OINSI submitted 2025-02-24 quant-ph cond-mat.str-elhep-th

classification quant-phcond-mat.str-elhep-th
keywords formsymmetryinformation-theoreticsymmetriesemergentquantumregimestransition
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Higher-form symmetries act on sub-dimensional spatial manifolds of a quantum system. They can emerge as an exact symmetry at low energies even when they are explicitly broken at the microscopic level, making them difficult to characterize. In this work, we propose that the emergence of 1-form symmetries is information-theoretic in nature, characterized by the preservation of information about a specific bare (microscopic) 1-form symmetry. As a consequence, the loss of the emergent 1-form symmetry is an information-theoretic transition which we argue to be revealed from the long-range entanglement in the ensemble of post-measurement states. We analytically determine the regimes in which a 1-form symmetry emerges in product states on one- and two-dimensional lattices. In analytically intractable regimes, we demonstrate how to efficiently detect 1-form symmetries with a global quantum error correction (QEC) decoder and numerically examine the information-theoretic transition of the 1-form symmetry, including systems with $\mathbb{Z}_2$ topological order. As a practical application of our framework, we show that once the 1-form symmetry is detected to exist, a topological quantum phase transition characterized by the spontaneous breaking of the 1-form symmetry can be accurately determined by a disorder parameter. We further argue that our proposed theory for emergent 1-form symmetries offers new perspectives on particle condensation and suggests sharp information-theoretic phase boundaries between Higgs and confining regimes in the $\mathbb{Z}_2$ lattice gauge theory.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Perturbatively Stable Self-Correcting Classical Memory from Gauge Averaging

    quant-ph 2026-07 accept novelty 8.0 of 10

    3D Wegner gauge theory's self-correcting classical memory is proven stable under all sufficiently small local Hamiltonian perturbations, via a new gauge-averaging cluster expansion.

  2. Confinement as Decoding: Higher Form Codes and Lattice Yang-Mills Theory

    hep-th 2026-08 conditional novelty 6.0 of 10

    Decoding a higher-form quantum code with Wilson-line noise is the same computation as comparing center-twisted Yang-Mills partition functions; the paper works out this dictionary and its strong-coupling consequences.

  3. Measurement-only circuit of perturbed toric code on triangular lattice: Topological entanglement, 1-form symmetry and logical qubits

    quant-ph 2025-10 conditional novelty 6.0 of 10

    In a measurement-only triangular-lattice toric code, topological-entanglement, 1-form-symmetry string, and logical-loop order parameters transition at different measurement probabilities and with different critical exponents.

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