Holographic pinning

Publication date

2017-11-27

Authors

Jokela, Niko
Jarvinen, MattiISNI 0000000506769475
Lippert, Matthew

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Document Type

Article
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Abstract

In a holographic probe-brane model exhibiting a spontaneously spatially modulated ground state, we introduce explicit sources of symmetry breaking in the form of ionic and antiferromagnetic lattices. For the first time in a holographic model, we demonstrate pinning, in which the translational Goldstone mode is lifted by the introduction of explicit sources of translational symmetry breaking. The numerically computed optical conductivity fits very well to a Drude-Lorentz model with a small residual metallicity, precisely matching analytic formulas for the DC conductivity. We also find an instability of the striped phase in the presence of a large-amplitude ionic lattice.

Keywords

Gauge-gravity dualities, String theory techniques in condensed matter, Strings & branes, Strongly correlated systems, Spontaneous symmetry breaking

Citation

Jokela, N, Jarvinen, M & Lippert, M 2017, 'Holographic pinning', Physical Review D - Particles, Fields, Gravitation and Cosmology, vol. 96, no. 10, 106017 . https://doi.org/10.1103/PhysRevD.96.106017