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Snowmass White Paper: Effective Field Theories for Condensed Matter Systems

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arxiv 2203.10110 v1 pith:PWIILI27 submitted 2022-03-18 hep-th cond-mat.other

classification hep-thcond-mat.other
keywords fieldeffectivemattertheorycondenseddiscussdynamicssystems
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We review recent progress and a number of future directions for applications of effective field theory methods to condensed matter systems broadly defined. Our emphasis is on areas that have allowed a fertile exchange of ideas between high energy physics and many-body theory. We discuss developments in the effective field theory of spontaneous symmetry breaking, of hydrodynamics and non-equilibrium dynamics more generally, fracton phases of matter, and dualities between 2+1 dimensional field theories. We furthermore discuss the application of effective field theory to non-Fermi liquids, the dynamics of entanglement entropy and to condensed matter aspects of cosmology.

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Cited by 2 Pith papers

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  1. Planons and their Carroll-Galilei symmetries

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    A group-theoretic classification of planon dynamics shows that massless Galilei orbits describe planar-restricted particles, with dipoles arising from a mixed Carroll-Galilei symmetry.

  2. Notes from the bulk

    hep-th 2025-07 conditional novelty 4.0 of 10

    A boundary-QFT analysis shows that curved bulk metrics create local edge velocities in topological models and that fracton and linearized-gravity theories carry Kac-Moody boundary algebras.

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