Zero sound and higher-form symmetries in compressible holographic phases
arXiv:2210.14802 · doi:10.1007/JHEP12(2023)040
Abstract
Certain holographic states of matter with a global U(1) symmetry support a sound mode at zero temperature, caused neither by spontaneous symmetry breaking of the global U(1) nor by the emergence of a Fermi surface in the infrared. In this work, we show that such a mode is also found in zero density holographic quantum critical states. We demonstrate that in these states, the appearance of a zero temperature sound mode is the consequence of a mixed `t Hooft anomaly between the global U(1) symmetry and an emergent higher-form symmetry. At non-zero temperatures, the presence of a black hole horizon weakly breaks the emergent symmetry and gaps the collective mode, giving rise to a sharp Drude-like peak in the electric conductivity. A similar gapped mode arises at low temperatures for non-zero densities when the state has an emergent Lorentz symmetry, also originating from an approximate anomalous higher-form symmetry. However, in this case the collective excitation does not survive at zero temperature where, instead, it dissolves into a branch cut due to strong backreaction from the infrared, critical degrees of freedom. We comment on the relation between our results and the application of the Luttinger theorem to compressible holographic states of matter.
v1: 53 pages, 6 figures plus appendices. v2: published version, minor edits
References in corpus (42)
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- N=6 superconformal Chern-Simons-matter theories, M2-branes and their gravity duals
- Generalized Global Symmetries
- "Deconfined" quantum critical points
- Quantum criticality beyond the Landau-Ginzburg-Wilson paradigm
- An Investigation of AdS Backreaction and Holography
- Weak magnetism and non-Fermi liquids near heavy-fermion critical points
- Effective Holographic Theories for low-temperature condensed matter systems
- Universality of the hydrodynamic limit in AdS/CFT and the membrane paradigm
- Generalized Symmetries in Condensed Matter
- Sachdev-Ye-Kitaev Models and Beyond: A Window into Non-Fermi Liquids
- Momentum dissipation and effective theories of coherent and incoherent transport
- Boundary Conditions and Dualities: Vector Fields in AdS/CFT
- Electron stars for holographic metallic criticality
- Zero Sound from Holography
- Quantum critical lines in holographic phases with (un)broken symmetry
- Shear Modes, Criticality and Extremal Black Holes
- Deconstructing holographic liquids
- Non-Fermi liquids as ersatz Fermi liquids: general constraints on compressible metals
- Fermi surfaces and gauge-gravity duality
- Nonlinear Bosonization of Fermi Surfaces: The Method of Coadjoint Orbits
- Holography and the sound of criticality
- Strange metals as ersatz Fermi liquids
- Conductivities for Hyperscaling Violating Geometries
- A Novel Formula for Bulk Viscosity from the Null Horizon Focusing Equation
- Zero Sound in Strange Metallic Holography
- Critical drag as a mechanism for resistivity
- Origin of the Drude peak and of zero sound in probe brane holography
- Damping of Pseudo-Goldstone Fields
- A prescription for holographic Schwinger-Keldysh contour in non-equilibrium systems
- Hydrodynamic diffusion and its breakdown near AdS quantum critical points
- Universal thermal and electrical conductivity from holography
- Effective field theory of stochastic diffusion from gravity
- Holographic pinning
- Fractional Electromagnetism in Quantum Matter and High-Energy Physics
- All order effective action for charge diffusion from Schwinger-Keldysh holography
- Non-vanishing normal density in cold holographic superfluids
- Dissipative effects in finite density holographic superfluids
- Near-Extremal Fluid Mechanics
- Holographic Dissipation from the Symplectic Current
- Emerging Fermi liquids from regulated Quantum Electron Stars
- Novel semi-circle law and Hall sliding in a strongly interacting electron liquid