Journal
EUROPEAN PHYSICAL JOURNAL C
Volume 81, Issue 6, Pages -Publisher
SPRINGER
DOI: 10.1140/epjc/s10052-021-09327-x
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Funding
- Sultan Qaboos University [IG/SCI/PHYS/20/07]
- National Research Council of Thailand [NFS6400117]
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This study investigates exact solutions for both Jackiw-Teitelboim gravity and its deformed version, utilizing proper integral transformations over Euclidean time coordinates to examine precise solutions for hyperbolic coverage, cusp geometry, and other compact sectors of the AdS2 spacetime manifold.
It is well known that Jackiw-Teitelboim (JT) gravity posses the simplest theory on 2-dimensional gravity. The model has been fruitfully studied in recent years. In the present work, we investigate exact solutions for both JT and deformed JT gravity recently proposed in the literature. We revisit exact Euclidean solutions for Jackiw-Teitelboim gravity using all the non-zero components of the dilatonic equations of motion using proper integral transformation over Euclidean time coordinate. More precisely, we study exact solutions for hyperbolic coverage, cusp geometry and another compact sector of the AdS2 spacetime manifold.
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