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Damping of Pseudo-Goldstone Fields

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arxiv 2111.13459 v2 pith:SQMFZ2G5 submitted 2021-11-26 hep-th cond-mat.str-el

classification hep-thcond-mat.str-el
keywords dampingdensityphaseshydrodynamicslimitmasspseudo-goldstonepseudo-goldstones
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Approximate symmetries abound in Nature. If these symmetries are also spontaneously broken, the would-be Goldstone modes acquire a small mass, or inverse correlation length, and are referred to as pseudo-Goldstones. At nonzero temperature, the effects of dissipation can be captured by hydrodynamics at sufficiently long scales compared to the local equilibrium. Here we show that in the limit of weak explicit breaking, locality of hydrodynamics implies that the damping of pseudo-Goldstones is completely determined by their mass and diffusive transport coefficients. We present many applications: superfluids, QCD in the chiral limit, Wigner crystal and density wave phases in the presence of an external magnetic field or not, nematic phases and (anti-)ferromagnets. For electronic density wave phases, pseudo-Goldstone damping generates a contribution to the resistivity independent of the strength of disorder, which can have a linear temperature dependence provided the associated diffusivity saturates a bound. This is reminiscent of the phenomenology of strange metal high $T_c$ superconductors, where charge density waves are observed across the phase diagram.

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Cited by 3 Pith papers

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  1. Higher-form (Quasi)Hydrodynamics from Holography: Deformations and Dualities

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  3. Emergent structures in open EFTs

    hep-th 2025-09 conditional novelty 5.0 of 10

    Breaking the advanced (r minus a) symmetry in Schwinger-Keldysh open EFTs forces deformed identities among the equations of motion, and the paper gives an explicit deformed diffeomorphism identity for open gravity.

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