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Introduction to Gauge/Gravity Duality (TASI Lectures 2017)

High Energy Physics - Theory 2018-07-27 v1 Strongly Correlated Electrons

Abstract

We review how the AdS/CFT correspondence is motivated within string theory, and discuss how it is generalized to gauge/gravity duality. In particular, we highlight the relation to quantum information theory by pointing out that the Fisher information metric of a Gaussian probability distribution corresponds to an Anti-de Sitter space. As an application example of gauge/gravity duality, we present a holographic Kondo model. The Kondo model in condensed matter physics describes a spin impurity interacting with a free electron gas: At low energies, the impurity is screened and there is a logarithmic rise of the resistivity. In quantum field theory, this amounts to a negative beta function for the impurity coupling and the theory flows to a non-trivial IR fixed point. For constructing a gravity dual, we consider a large NN version of this model in which the ambient electrons are strongly coupled even before the interaction with the impurity is switched on. We present the brane construction which motivates a gravity dual Kondo model and use this model to calculate the impurity entanglement entropy and the resistivity, which has a power-law behaviour. We also study quantum quenches, and discuss the relation to the Sachdev-Ye-Kitaev model.

Keywords

Cite

@article{arxiv.1807.09872,
  title  = {Introduction to Gauge/Gravity Duality (TASI Lectures 2017)},
  author = {Johanna Erdmenger},
  journal= {arXiv preprint arXiv:1807.09872},
  year   = {2018}
}

Comments

37 pages, 13 figures, lectures given at the 2017 TASI Summer School, Boulder, Colorado; conference C17-06-05.4

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