Proliferation Transitions for Non-Abelian Anyons
Abstract
We construct phase transitions that proliferate condensable anyons in general 2+1d topological orders, including non-abelian ones. The central tool that provides a systematic approach to this question is the Symmetry Topological Field Theory (SymTFT). For a given topological order, we identify the relevant symmetry from the transparent lines generated by the condensable anyons, and thereby realize the topological order in terms of a 3+1d SymTFT sandwich. The proliferation phase transition is rea...
Description / Details
We construct phase transitions that proliferate condensable anyons in general 2+1d topological orders, including non-abelian ones. The central tool that provides a systematic approach to this question is the Symmetry Topological Field Theory (SymTFT). For a given topological order, we identify the relevant symmetry from the transparent lines generated by the condensable anyons, and thereby realize the topological order in terms of a 3+1d SymTFT sandwich. The proliferation phase transition is realized by coupling scalar fields to the anyons purely on the symmetry boundary of the SymTFT. We illustrate the construction for abelian theories, as well as non-abelian ones, and Chern-Simons theories, and extend it to anomalous anyons.
Source: arXiv:2608.12303v1 - http://arxiv.org/abs/2608.12303v1 PDF: https://arxiv.org/pdf/2608.12303v1 Original Link: http://arxiv.org/abs/2608.12303v1
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Aug 13, 2026
Quantum Computing
Quantum Physics
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