Exotic holographic RG flows at finite temperature

Publication date

2018-10-01

Authors

Gursoy, UmutISNI 0000000392717860
Kiritsis, Elias
Nitti, Francesco
Silva Pimenta, Leandro

Editors

Advisors

Supervisors

Document Type

Article
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Abstract

Black hole solutions and their thermodynamics are studied in Einstein-scalar theories. The associated zero-temperature solutions are non-trivial holographic RG flows. These include solutions which skip intermediate extrema of the bulk scalar potential or feature an inversion of the direction of the flow of the coupling (bounces). At finite temperature, a complex set of branches of black hole solutions is found. In some cases, first order phase transitions are found between the black-hole branches. In other cases, black hole solutions are found to exist even for boundary conditions which did not allow a zero-temperature vacuum flow. Finite-temperature solutions driven solely by the vacuum expectation value of a perturbing operator (zero source) are found and studied. Such solutions exist generically (i.e. with no special tuning of the potential) in theories in which the vacuum flows feature bounces. It is found that they exhibit conformal thermodynamics.

Keywords

AdS-CFT Correspondence, Black Holes, Gauge-gravity correspondence, Nuclear and High Energy Physics

Citation

Gürsoy, U, Kiritsis, E, Nitti, F & Silva Pimenta, L 2018, 'Exotic holographic RG flows at finite temperature', Journal of High Energy Physics, vol. 2018, no. 10, 173. https://doi.org/10.1007/JHEP10(2018)173