Abstract We show that the dynamics of the kinematic space of a 2-dimensional CFT is gravitational and described by Jackiw-Teitelboim theory. We discuss the first law of this 2-dimensional dilaton gravity theory to support the relation between modular Hamiltonian and dilaton that underlies the kinematic space construction. It is further argued that Jackiw-Teitelboim gravity can be derived from a 2-dimensional version of Jacobson’s maximal vacuum entanglement hypothesis. Applied to the kinematic space context, this leads us to the statement that the kinematic space of a 2-dimensional boundary CFT can be obtained from coupling the boundary CFT to JT gravity through a maximal vacuum entanglement principle
Abstract We study Jackiw-Teitelboim gravity with dynamical end...
Abstract We construct the most general theory of 2D Einstein-dilaton gravity coupled with U(1) gauge...
The exsistence of gravitational kinks in 2d dilaton gravity, for topologically trivial spacetimes, i...
In this paper we study a connection between Jackiw-Teitelboim (JT) gravity on two-dimensional anti d...
Abstract We formulate the path integral for Jackiw-Teitelboim gravity in the second order formalism ...
Abstract We study the dynamics of the geometric entanglement entropy of a 2D CFT in the presence of ...
In this note we study the 1 + 1 dimensional Jackiw-Teitelboim gravity in Lorentzian signature, expli...
We investigate structural aspects of JT gravity through its BF description. In particular, we provid...
We study two-dimensional Liouville gravity and minimal string theory on spaces with fixed length bou...
We present a field theory description for the non-perturbative splitting and joining of baby univers...
We present a field theory description for the non-perturbative splitting and joining of baby univers...
Abstract We extend kinematic space to a simple scenario where the state is not fixed by conformal in...
The kinematic space could play a key role in constructing the bulk geometry from dual CFT. In this p...
In this letter, we show that Jackiw-Teitelboim (JT) gravity can be naturally realized in the Karch-R...
In the first part of this thesis we explore the entanglement structure of relativistic field theorie...
Abstract We study Jackiw-Teitelboim gravity with dynamical end...
Abstract We construct the most general theory of 2D Einstein-dilaton gravity coupled with U(1) gauge...
The exsistence of gravitational kinks in 2d dilaton gravity, for topologically trivial spacetimes, i...
In this paper we study a connection between Jackiw-Teitelboim (JT) gravity on two-dimensional anti d...
Abstract We formulate the path integral for Jackiw-Teitelboim gravity in the second order formalism ...
Abstract We study the dynamics of the geometric entanglement entropy of a 2D CFT in the presence of ...
In this note we study the 1 + 1 dimensional Jackiw-Teitelboim gravity in Lorentzian signature, expli...
We investigate structural aspects of JT gravity through its BF description. In particular, we provid...
We study two-dimensional Liouville gravity and minimal string theory on spaces with fixed length bou...
We present a field theory description for the non-perturbative splitting and joining of baby univers...
We present a field theory description for the non-perturbative splitting and joining of baby univers...
Abstract We extend kinematic space to a simple scenario where the state is not fixed by conformal in...
The kinematic space could play a key role in constructing the bulk geometry from dual CFT. In this p...
In this letter, we show that Jackiw-Teitelboim (JT) gravity can be naturally realized in the Karch-R...
In the first part of this thesis we explore the entanglement structure of relativistic field theorie...
Abstract We study Jackiw-Teitelboim gravity with dynamical end...
Abstract We construct the most general theory of 2D Einstein-dilaton gravity coupled with U(1) gauge...
The exsistence of gravitational kinks in 2d dilaton gravity, for topologically trivial spacetimes, i...