Please use this identifier to cite or link to this item:
http://hdl.handle.net/10071/33824
Author(s): | Franzin, E. Frassino, A. M. Rocha, J. V. |
Date: | 2024 |
Title: | Tidal Love numbers of static black holes in anti-de Sitter |
Journal title: | Journal of High Energy Physics |
Volume: | 2024 |
Number: | 12 |
Reference: | Franzin, E., Frassino, A. M. & Rocha, J. V. (2024). Tidal Love numbers of static black holes in anti-de Sitter. Journal of High Energy Physics. 2024(12), 224. https://doi.org/10.1007/JHEP12(2024)224. |
ISSN: | 1126-6708 |
DOI (Digital Object Identifier): | 10.1007/JHEP12(2024)224 |
Keywords: | AdS-CFT correspondence Black holes |
Abstract: | Tidal Love numbers of anti-de Sitter black holes are understood as linear response coefficients governing how the holographically dual plasma polarizes when the geometry of the space, in which the plasma lives, is deformed. So far, this picture has been applied only to black branes with plane wave perturbations. We fill the gap in the literature by performing the computation of tidal Love numbers for the four-dimensional Schwarzschild solution in global anti-de Sitter, which is dual to a conformal plasma on S2. We conclude about the effect of the bulk gravitational perturbations on the boundary metric and stress tensor, responsible for the geometric polarization. The computation of the tidal Love numbers is performed in both Regge-Wheeler gauge and the Kodama-Ishibashi gauge-invariant approach. We spell out how to convert the tidal Love numbers determined in these two formalisms and find perfect agreement. We also relate the Kodama-Ishibashi formalism with the Kovtun-Starinets approach, which is particularly well suited for the holographic analysis of black branes. This allows us to compare with the tidal Love number results for black branes in anti-de Sitter, also finding agreement in the relevant regime. |
Peerreviewed: | yes |
Access type: | Open Access |
Appears in Collections: | IT-RI - Artigos em revistas científicas internacionais com arbitragem científica |
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article_109828 | 1,42 MB | Adobe PDF | View/Open |
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