We investigate a higher-derivative scalar field model in a fixed d+1 dimensional AdS background as a toy model for a gravitational dual to a higher-rank logarithmic CFT. The holographic two-point correlation functions on the boundary agree with higher-rank LCFT correlation functions. For odd rank, the theory allows for a truncation to a nontrivial subspace with non-negative scalar product. We discuss possible implications for higher-derivative critical gravity theories.</p
We investigate the AdS/CFT correspondence for higher-derivative gravity systems, and develop a forma...
The holographic principle, which states that observables in quantum gravity are associated with the ...
We review the status of three-dimensional "general massive gravity" (GMG) in its linearization about...
We investigate a higher-derivative scalar field model in a fixed d+1 dimensional AdS background as a...
We investigate a higher-derivative scalar field model in a fixed d+1 dimensional AdS background as a...
We study higher-derivative gravity theories in arbitrary space-time dimension d with a cosmological ...
Indexación: Scopus.We compute the holographic stress tensor and the logarithmic energy-momentum tens...
In gravitational theories involving higher curvature corrections the metric describes additional deg...
Using a first order Chern-Simons-like formulation of gravity we systematically construct higher-deri...
We study a fourth-order derivative scalar field configuration in a fixed Lifshitz background. Using ...
We revisit the problem of the bulk-boundary unitarity clash in 2 + 1-dimensional gravity theories, w...
We present a new unitary model of gravity in three dimensions containing a particular combination of...
The physical modes of a recently proposed D-dimensional "critical gravity'', linearized about its an...
We investigate the AdS/CFT correspondence for higher-derivative gravity systems, and develop a forma...
The holographic principle, which states that observables in quantum gravity are associated with the ...
We review the status of three-dimensional "general massive gravity" (GMG) in its linearization about...
We investigate a higher-derivative scalar field model in a fixed d+1 dimensional AdS background as a...
We investigate a higher-derivative scalar field model in a fixed d+1 dimensional AdS background as a...
We study higher-derivative gravity theories in arbitrary space-time dimension d with a cosmological ...
Indexación: Scopus.We compute the holographic stress tensor and the logarithmic energy-momentum tens...
In gravitational theories involving higher curvature corrections the metric describes additional deg...
Using a first order Chern-Simons-like formulation of gravity we systematically construct higher-deri...
We study a fourth-order derivative scalar field configuration in a fixed Lifshitz background. Using ...
We revisit the problem of the bulk-boundary unitarity clash in 2 + 1-dimensional gravity theories, w...
We present a new unitary model of gravity in three dimensions containing a particular combination of...
The physical modes of a recently proposed D-dimensional "critical gravity'', linearized about its an...
We investigate the AdS/CFT correspondence for higher-derivative gravity systems, and develop a forma...
The holographic principle, which states that observables in quantum gravity are associated with the ...
We review the status of three-dimensional "general massive gravity" (GMG) in its linearization about...