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Density response of holographic metallic IR fixed points with translational pseudo-spontaneous symmetry breaking

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arxiv 1904.06237 v2 pith:45AHL3AK submitted 2019-04-12 hep-th cond-mat.str-el

classification hep-thcond-mat.str-el
keywords densityresponseholographictranslationalcollectivecontainsexcitationmomentum
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The density response of charged liquids contains a collective excitation known as the plasmon. In holographic systems with translational invariance the origin of this collective excitation is traced back to the presence of zero-sound. Using a holographic model in which translational symmetry is broken pseudo-spontaneously, we show the density response is not dominated by a single isolated mode at low momentum and temperature. As a consequence, the density response contains a broad asymmetric peak with an attenuation which does not increase monotonically with momentum and temperature.

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  1. Holographic fundamental matter in multilayered media

    hep-th 2019-09 conditional novelty 6.0 of 10

    A top-down holographic D3-D5-D7 construction yields anisotropic thermodynamics and distinct in-plane and off-plane sound and diffusion modes for strongly coupled layered matter with fundamental flavors.

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