Yayınlanmış 12 Nisan 2024 | Sürüm v1
Dergi makalesi Açık

Scaling symmetry, Smarr relation, and the extended first law in lower-dimensional Lovelock gravity

  • 1. Department of Software Engineering, Faculty of Engineering and Architecture, Ankara Science University, Ankara, Turkey
  • 2. Department of Physics, Faculty of Science and Letters, Istanbul Technical University, Maslak, Istanbul, Turkey
  • 3. Department of Physics, Faculty of Arts and Sciences, Sinop University, Sinop, Turkey
  • 4. Department of Physics, Faculty of Arts and Sciences, Middle East Technical University, Ankara, Turkey
  • 5. Department of Physics Engineering, Faculty of Engineering and Natural Sciences, Istanbul Medeniyet University, Istanbul, Turkey

Açıklama

Recently, it was discovered that lower-dimensional versions of Lovelock gravity exist as scalar-tensor theories that are examples of Horndeski gravity. We study the thermodynamics of the static black hole solutions in these theories up to cubic order through Euclidean methods. Considering solutions with spherical, planar and hyperbolic event horizons ($k=+1,0,-1$), we show that the universality of the thermodynamics for planar black holes ($k=0$) and the extended first law that include the variation of the couplings together with their associated potentials hold also in lower dimensions. We find that in $D=4,6$ where the 2nd- and the 3rd-order Lovelock Lagrangians are boundary terms respectively, the Smarr relation is modified since the entropy is not a homogenous function in these dimensions. We also present a derivation of the Smarr relation and its modified version based on the global scaling properties of the reduced action that is used to obtain the solutions consistently. Unlike the other hairy black hole solutions that have been analyzed before, despite the terms in the reduced action that break the scaling symmetry, the derivation still follows from a conserved Noether charge.

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j.nuclphysb.2024.116535.pdf

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