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We examine the hydrodynamics of systems with spontaneously broken multipolar symmetries using a systematic effective field theory.
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J. Guo, P. Glorioso, and A. Lucas, Fracton hydrodynamics without time-reversal symmetry, Phys. Rev. Lett. 129
2022
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C. Stahl, E. Lake, and R. Nandkishore, Spontaneous breaking of multipole symmetries, Phys. Rev. B 105
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J. Iaconis, A. Lucas, and R. Nandkishore, Multipole conservation laws and subdiffusion in any dimension, Phys. Rev. E 103
2021
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P. Glorioso, L. V. Delacrétaz, X. Chen, R. M. Nandkishore, and A. Lucas, Hydrodynamics in lattice models with continuous non-Abelian symmetries, SciPost Phys. 10
2021
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K. T. Grosvenor, C. Hoyos, F. Peña Benitez, and P. Surówka, Hydrodynamics of ideal fracton fluids, Phys. Rev. Res. 3
2021
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E. Lake, M. Hermele, and T. Senthil, Dipolar Bose-Hubbard model, Phys. Rev. B 106
2022
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P. Glorioso, J. Guo, and A. Lucas, Breakdown of hydrodynamics below four dimensions in a fracton fluid, Nature Physics 18
2022
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J. Richter and A. Pal, Anomalous hydrodynamics in a class of scarred frustration-free Hamiltonians, Phys. Rev. Res. 4
2022
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2022
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K. Jensen and A. Raz, Large N N fractons (2022), arXiv:2205.01132
2022
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2022
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M. Qi, O. Hart, A. J. Friedman, R. Nandkishore, and A. Lucas, Hydrodynamics of higher-rank gauge theories, SciPost Phys. 14
2023
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