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Bibliographic Details
Main Authors: Tseng, Wei-En, Hart, Oliver, Nandkishore, Rahul
Format: Preprint
Published: 2026
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Online Access:https://arxiv.org/abs/2603.05594
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author Tseng, Wei-En
Hart, Oliver
Nandkishore, Rahul
author_facet Tseng, Wei-En
Hart, Oliver
Nandkishore, Rahul
contents We demonstrate how pump-probe techniques enable specific diagnostics of fracton phases of matter by exploring how lineon-planon braiding in the paradigmatic X-cube phase may be probed spectroscopically. Our discussion builds on works explaining how to probe anyonic exchange statistics spectroscopically in traditional spin liquids. However, the extension to fracton phases reveals qualitatively new features coming from the existence of multi-anyon bound states, which alter the long-time asymptotic behavior of the signal. In particular, the signal we examine is sensitive to (i) the existence of nontrivial braiding statistics in three dimensions, (ii) the fact that some of the fractionalized excitations can form bound states, and (iii) that some of the fractionalized excitations are lineonic in nature (i.e., mobile only in one dimension). Thus, one can spectroscopically detect not only the existence of anyonic braiding statistics in fracton phases, but can crisply distinguish it from anyons in traditional (non-fractonic) spin liquids.
format Preprint
id arxiv_https___arxiv_org_abs_2603_05594
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Fingerprinting fractons with pump-probe spectroscopy
Tseng, Wei-En
Hart, Oliver
Nandkishore, Rahul
Strongly Correlated Electrons
We demonstrate how pump-probe techniques enable specific diagnostics of fracton phases of matter by exploring how lineon-planon braiding in the paradigmatic X-cube phase may be probed spectroscopically. Our discussion builds on works explaining how to probe anyonic exchange statistics spectroscopically in traditional spin liquids. However, the extension to fracton phases reveals qualitatively new features coming from the existence of multi-anyon bound states, which alter the long-time asymptotic behavior of the signal. In particular, the signal we examine is sensitive to (i) the existence of nontrivial braiding statistics in three dimensions, (ii) the fact that some of the fractionalized excitations can form bound states, and (iii) that some of the fractionalized excitations are lineonic in nature (i.e., mobile only in one dimension). Thus, one can spectroscopically detect not only the existence of anyonic braiding statistics in fracton phases, but can crisply distinguish it from anyons in traditional (non-fractonic) spin liquids.
title Fingerprinting fractons with pump-probe spectroscopy
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2603.05594