Holographic Plasmons
arXiv:1712.05672 · doi:10.1007/JHEP11(2018)176
Abstract
Since holography yields exact results, even in situations where perturbation theory is not applicable, it is an ideal framework for modeling strongly correlated systems. We extend previous holographic methods to take the dynamical charge response into account and use this to perform the first holographic computation of the dispersion relation for plasmons. As the dynamical charge response of strange metals can be measured using the new technique of momentum-resolved electron energy-loss spectroscopy (M-EELS), plasmon properties are the next milestone in verifying predictions from holographic models of new states of matter.
12 pages, 2 figures. v2: Minor changes v3: Minor adjustments v4: Published version
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- Holographic Response of Electron Clouds
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- Collective modes of polarizable holographic media in magnetic fields
- Density response of holographic metallic IR fixed points with translational pseudo-spontaneous symmetry breaking
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- Holographic D-brane constructions with dynamical gauge fields
- Scheme dependence and instability of double-trace deformations for gauge fields in AdS
- Diffusion and instabilities in large-N holographic Fermi liquids: the vector fluctuations of the electron star