4.4 Article

On AdS2 holography from redux, renormalization group flows and c-functions

Journal

JOURNAL OF HIGH ENERGY PHYSICS
Volume -, Issue 2, Pages -

Publisher

SPRINGER
DOI: 10.1007/JHEP02(2019)039

Keywords

2D Gravity; Gauge-gravity correspondence; Holography and condensed matter physics (AdS; CMT)

Funding

  1. International Centre for Theoretical Sciences (ICTS) [ICTS/adscft20/05]
  2. Infosys Foundation

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Extremal black branes upon compactification in the near horizon throat region are known to give rise to AdS(2) dilaton-gravity-matter theories. Away from the throat region, the background has nontrivial profile. We interpret this as holographic renormalization group flow in the 2-dim dilaton-gravity-matter theories arising from dimensional reduction of the higher dimensional theories here. The null energy conditions allow us to formulate a holographic c-function in terms of the 2-dim dilaton for which we argue a c-theorem subject to appropriate boundary conditions which amount to restrictions on the ultraviolet theories containing these extremal branes. At the infrared AdS(2) fixed point, the c-function becomes the extremal black brane entropy. We discuss the behaviour of this inherited c-function in various explicit examples, in particular compactified nonconformal branes, and compare it with other discussions of holographic c-functions. We also adapt the holographic renormalization group formulated in terms of radial Hamiltonian flow to 2-dim dilaton-gravity-scalar theories, which while not Wilsonian, gives qualitative insight into the flow equations and beta-functions.

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