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Charged dilatonic black holes and their transport properties

✍ Scribed by B. Goutéraux; B.S. Kim; R. Meyer


Publisher
John Wiley and Sons
Year
2011
Tongue
English
Weight
242 KB
Volume
59
Category
Article
ISSN
0015-8208

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✦ Synopsis


Abstract

We briefly explain the consistency conditions imposed on the effective holographic theories, which are parameterized by two real exponents (γ,δ) that control the IR dynamics. The general scaling of DC resistivity with temperature at low temperature and AC conductivity at low frequency across the whole (γ,δ) plane are explained. There is a codimension‐one region where the DC resistivity is linear in the temperature. For massive carriers, it is shown that when the scalar operator is not the dilaton, the DC resistivity scales as the heat capacity (and entropy) for (2+1)‐dimensional systems. Regions are identified where the theory at finite density is a Mott‐like insulator. This contribution is based on (C. Charmousis, et al. J. High Energy Phys. 1011, 151 (2010)) [1] with emphasis on the transport properties of charged dilatonic black holes with potential.


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## Abstract We review a recent holographic analysis [1] of charged black holes with scalar hair in view of their applications to the cuprate high temperature superconductors. We show in particular that these black holes show an interesting phase structure including critical behaviour at zero temper