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Main Authors: Brennan, T. Daniel, Jacobson, Theodore, Roumpedakis, Konstantinos
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2504.08036
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author Brennan, T. Daniel
Jacobson, Theodore
Roumpedakis, Konstantinos
author_facet Brennan, T. Daniel
Jacobson, Theodore
Roumpedakis, Konstantinos
contents We study the fractionalization of 0-form global symmetries on line operators in theories without 1-form global symmetries. The projective transformation properties of line operators are renormalization group invariant, and we derive constraints which are similar to the consequences of exact 1-form symmetries. For instance, symmetry fractionalization can lead to exact selection rules for line operators in twisted sectors, and in theories with 't Hooft anomalies involving the fractionalization class, these selection rules can further imply that certain twisted sectors have exact finite-volume vacuum degeneracies. Along the way, we define topological operators on open codimension-1 manifolds, which we call `disk operators', that provide a convenient way of encoding the projective action of 0-form symmetries on lines. In addition, we discuss the possible ways symmetry fractionalization can be matched along renormalization group flows.
format Preprint
id arxiv_https___arxiv_org_abs_2504_08036
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Consequences of Symmetry Fractionalization without 1-Form Global Symmetries
Brennan, T. Daniel
Jacobson, Theodore
Roumpedakis, Konstantinos
High Energy Physics - Theory
We study the fractionalization of 0-form global symmetries on line operators in theories without 1-form global symmetries. The projective transformation properties of line operators are renormalization group invariant, and we derive constraints which are similar to the consequences of exact 1-form symmetries. For instance, symmetry fractionalization can lead to exact selection rules for line operators in twisted sectors, and in theories with 't Hooft anomalies involving the fractionalization class, these selection rules can further imply that certain twisted sectors have exact finite-volume vacuum degeneracies. Along the way, we define topological operators on open codimension-1 manifolds, which we call `disk operators', that provide a convenient way of encoding the projective action of 0-form symmetries on lines. In addition, we discuss the possible ways symmetry fractionalization can be matched along renormalization group flows.
title Consequences of Symmetry Fractionalization without 1-Form Global Symmetries
topic High Energy Physics - Theory
url https://arxiv.org/abs/2504.08036