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R2 corrections to the black string instability and the boosted black string

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Author(s):
Henriquez-Baez, Carla ; Oliva, Julio ; Oyarzo, Marcelo ; Reyes, Marcel I. Yanez
Total Authors: 4
Document type: Journal article
Source: PHYSICAL REVIEW D; v. 107, n. 4, p. 7-pg., 2023-02-10.
Abstract

We consider a perturbative Gauss-Bonnet term supplementing the Einstein-Hilbert action and evaluate its effect on the spectrum of the scalar mode that triggers the Gregory-Laflamme instability of black strings in five-dimensional general relativity. After studying some properties of the static black string, we provide the correction to the Lichnerowicz operator up to Oo alpha 2 thorn . For the scalar mode of the gravitational perturbation, we find a master variable and study its spectrum, providing an analysis of the regime of validity of our scheme. We show that the instability persists under the inclusion of the R2 correction and that the critical wavelength increases with the value of alpha/r2 thorn MUCH LESS-THAN 1. We also construct the boosted black strings and compute the correction to the mass, the momentum, and the tension due to the higher curvature term. The presence of the dimensionful coupling alpha spoils the validity of the Smarr relation, which is the gravitational version of the Euler relation that must hold for every homogeneous, thermodynamic system. We show that this identity can be restored by working in an extended thermodynamic setup that includes variations of the Gauss-Bonnet coupling. (AU)

FAPESP's process: 19/13231-7 - Chile - São Paulo network on holography
Grantee:Horatiu Stefan Nastase
Support Opportunities: Regular Research Grants