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Quantum Liquids: Emergent higher-rank gauge theory and fractons

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arxiv 2403.17074 v1 pith:GFZDB75O submitted 2024-03-25 cond-mat.str-el

Quantum Liquids: Emergent higher-rank gauge theory and fractons

classification cond-mat.str-el
keywords fractonliquidsquantumemergentgaugeexcitationsgaplessmobility
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Fracton emerges from strongly interacting many-body systems whose excitations, referred to as sub-dimensional particles, have restricted mobility or kinetic motions. These entities have garnered significant interest due to their interdisciplinary implications spanning topological quantum codes, quantum field theory, emergent gravity, quantum information, and more, revealing unique nonequilibrium behaviors such as nonergodicity and glassy dynamics. This review presents a structured and educational overview of fracton phenomena, specifically focusing on gapless fracton liquids. Noteworthy for their compressibility and gapless excitations, fracton liquids facilitate collective modes reminiscent of those gauge fluctuations found in Maxwell's electromagnetic framework. However, they are distinct due to an additional higher-moment conservation law that restricts the mobility of individual charges and monopoles. Our exploration begins with the theoretical foundation of 3D fracton liquids, presenting a variety of emergent symmetric tensor gauge theories and reviewing their equilibrium and dynamic properties. Following this theoretical groundwork, we discuss the material realization of various fracton liquids in Yb-based breathing pyrochlore lattices, close-packed tiling structures and other synthetic quantum matter platforms. Additionally, we introduce a general protocol to foster and manipulate emergent fracton spin liquids in the realm of frustrated magnetism.

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  1. Classical fracton spin liquid and Hilbert space fragmentation in a 2D spin-$1/2$ model

    cond-mat.str-el 2025-08 unverdicted novelty 6.0

    A discretized higher-rank gauge theory on a square lattice produces a classical Ising fracton spin liquid with preserved tensor Gauss law, but quantum perturbations induce severe Hilbert space fragmentation that block...