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Jose D. Edelstein

Researcher at University of Santiago de Compostela

Publications -  132
Citations -  4461

Jose D. Edelstein is an academic researcher from University of Santiago de Compostela. The author has contributed to research in topics: Supersymmetry & Gauge theory. The author has an hindex of 32, co-authored 130 publications receiving 4048 citations. Previous affiliations of Jose D. Edelstein include Centro de Estudios Científicos & Harvard University.

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Causality Constraints on Corrections to the Graviton Three-Point Coupling

TL;DR: In this article, higher derivative corrections to the graviton three-point coupling within a weakly coupled theory of gravity were considered, and it was shown that the gravity wave non-gaussianity deviates significantly from the one computed in the Einstein theory.
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Causality Constraints on Corrections to the Graviton Three-Point Coupling

TL;DR: In this article, higher derivative corrections to the graviton three-point coupling within a weakly coupled theory of gravity were considered, and it was shown that the gravity wave non-gaussianity deviates significantly from the one computed in the Einstein theory.
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Causality constraints in AdS/CFT from conformal collider physics and Gauss-Bonnet gravity

TL;DR: In this paper, the relation between positivity of the energy constraints in conformal field theories and causality in their dual gravity description is explored, and it is shown that both sides of the AdS/CFT correspondence impose a restriction on the Gauss-Bonnet coupling.
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D6 branes and M theory geometrical transitions from gauged supergravity

TL;DR: In this article, the supergravity duals of supersymmetric theories arising in the world-volume of D6-branes wrapping holomorphic two-cycles and special lagrangian three-cycles within the framework of eight-dimensional gauged supergravity were studied.
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Jet quenching at finite `t Hooft coupling and chemical potential from AdS/CFT

TL;DR: In this paper, the first correction in the inverse-t Hooft coupling corresponding to string α' corrections in the dual background is presented. Butler et al. also consider the introduction of a chemical potential for the U(1)3 gauged R-symmetry.