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Fracton topological order, generalized lattice gauge theory, and duality

Author(s)
Vijay, Sagar; Haah, Jeongwan; Fu, Liang
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DownloadPhysRevB.94.235157.pdf (1.230Mb)
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Article is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use.
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Abstract
We introduce a generalization of conventional lattice gauge theory to describe fracton topological phases, which are characterized by immobile, pointlike topological excitations, and subextensive topological degeneracy. We demonstrate a duality between fracton topological order and interacting spin systems with symmetries along extensive, lower-dimensional subsystems, which may be used to systematically search for and characterize fracton topological phases. Commutative algebra and elementary algebraic geometry provide an effective mathematical tool set for our results. Our work paves the way for identifying possible material realizations of fracton topological phases.
Date issued
2016-12
URI
http://hdl.handle.net/1721.1/106302
Department
Massachusetts Institute of Technology. Department of Physics
Journal
Physical Review B
Publisher
American Physical Society
Citation
Vijay, Sagar, Jeongwan Haah, and Liang Fu. “Fracton Topological Order, Generalized Lattice Gauge Theory, and Duality.” Physical Review B 94.23 (2016): n. pag. © 2016 American Physical Society
Version: Final published version
ISSN
1098-0121
1550-235X

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