Higher-Derivative Supergravity, AdS$_4$ Holography, and Black Holes
Nikolay Bobev, Anthony M. Charles, Kiril Hristov, Valentin Reys

TL;DR
This paper investigates four-derivative corrections in four-dimensional gauged supergravity using conformal supergravity techniques, analyzing their effects on black hole thermodynamics and holographic dual field theories, with explicit calculations and M-theory embeddings.
Contribution
It determines the four-derivative Lagrangian for the $ ext{N}=2$ supergravity multiplet using two constants, and connects supergravity corrections to SCFT partition functions via localization.
Findings
All two-derivative solutions also solve four-derivative equations.
Explicit corrections to black hole entropy and thermodynamics are calculated.
First subleading $N^{1/2}$ correction to 3D SCFT partition function is derived.
Abstract
We use conformal supergravity techniques to study four-derivative corrections in four-dimensional gauged supergravity. We show that the four-derivative Lagrangian for the propagating degrees of freedom of the gravity multiplet is determined by two real dimensionless constants. We demonstrate that all solutions of the two-derivative equations of motion in the supergravity theory also solve the four-derivative equations of motion. These results are then applied to explicitly calculate the regularized on-shell action for any asymptotically locally AdS solution of the two-derivative equations of motion. The four-derivative terms in the supergravity Lagrangian modify the entropy and other thermodynamic observables for the black hole solutions of the theory. We calculate these corrections explicitly and demonstrate that the quantum statistical relation holds for general…
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