There and Back Again: A Gauging Nexus between Topological and Fracton Phases

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Main Authors: Gorantla, Pranay, Prem, Abhinav, Tantivasadakarn, Nathanan, Williamson, Dominic J.
Format: Preprint
Published: 2025
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author Gorantla, Pranay
Prem, Abhinav
Tantivasadakarn, Nathanan
Williamson, Dominic J.
author_facet Gorantla, Pranay
Prem, Abhinav
Tantivasadakarn, Nathanan
Williamson, Dominic J.
contents Coupled layer constructions are a valuable tool for capturing the universal properties of certain interacting quantum phases of matter in terms of the simpler data that characterizes the underlying layers. In the study of fracton phases, the X-Cube model in 3+1D can be realized via such a construction by starting with a stack of 2+1D Toric Codes and turning on a coupling which condenses a composite "particle-string" object. In a recent work [Phys. Rev. B 112, 125124 (2025)], we have demonstrated that in fact, the particle-string can be viewed as a symmetry defect of a topological 1-form symmetry. In this paper, we study the result of gauging this symmetry in depth. We unveil a rich gauging web relating the X-Cube model to symmetry protected topological (SPT) phases protected by a mix of subsystem and higher-form symmetries, subsystem symmetry fractionalization in the 3+1D Toric Code, and non-trivial extensions of topological symmetries by subsystem symmetries. Our work emphasizes the importance of topological symmetries in non-topological, geometric phases of matter.
format Preprint
id arxiv_https___arxiv_org_abs_2509_19440
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle There and Back Again: A Gauging Nexus between Topological and Fracton Phases
Gorantla, Pranay
Prem, Abhinav
Tantivasadakarn, Nathanan
Williamson, Dominic J.
Strongly Correlated Electrons
High Energy Physics - Theory
Quantum Physics
Coupled layer constructions are a valuable tool for capturing the universal properties of certain interacting quantum phases of matter in terms of the simpler data that characterizes the underlying layers. In the study of fracton phases, the X-Cube model in 3+1D can be realized via such a construction by starting with a stack of 2+1D Toric Codes and turning on a coupling which condenses a composite "particle-string" object. In a recent work [Phys. Rev. B 112, 125124 (2025)], we have demonstrated that in fact, the particle-string can be viewed as a symmetry defect of a topological 1-form symmetry. In this paper, we study the result of gauging this symmetry in depth. We unveil a rich gauging web relating the X-Cube model to symmetry protected topological (SPT) phases protected by a mix of subsystem and higher-form symmetries, subsystem symmetry fractionalization in the 3+1D Toric Code, and non-trivial extensions of topological symmetries by subsystem symmetries. Our work emphasizes the importance of topological symmetries in non-topological, geometric phases of matter.
title There and Back Again: A Gauging Nexus between Topological and Fracton Phases
topic Strongly Correlated Electrons
High Energy Physics - Theory
Quantum Physics
url https://arxiv.org/abs/2509.19440