Recent progress in studies of holographic dualities, originally motivated by insights from string theory, has led to a confluence with concepts and techniques from quantum information theory. A particularly successful approach has involved capturing holographic properties by means of tensor networks which not only give rise to physically meaningful correlations of holographic boundary states, but also reproduce and refine features of quantum error correction in holography. This topical review provides an overview over recent successful realizations of such models. It does so by building on an introduction of the theoretical foundations of AdS/CFT and necessary quantum information concepts, many of which have themselves developed into indepe...
This article reviews the progress in our understanding of the reconstruction of the bulk spacetime i...
Holographic tensor networks associated to tilings of (1+1)-dimensional de Sitter spacetime are intro...
The theory of random tensors is expanding rapidly in scope. At the combinatorial (zero dimensional) ...
Recent progress in studies of holographic dualities, originally motivated by insights from string th...
The holographic principle has been a central theme in most of the progress in the field of quantum g...
Holographic quantum-error correcting codes are models of bulk/boundary dualities such as the anti-de...
We propose a family of exactly solvable toy models for the AdS/CFT correspondence based on a novel c...
Holographic quantum-error correcting codes are models of bulk/boundary dualities such as the anti-de...
Abstract Random tensor networks provide useful models that incorporate various important features of...
The AdS/CFT correspondence realises the holographic principle where information in the bulk of a spa...
Tensor networks provide an efficient classical representation of certain strongly correlated quantum...
We give a pedagogical review of how concepts from quantum information theory build up the gravitatio...
In the long-standing quest to reconcile gravity with quantum mechanics, profound connections have be...
Holographic quantum error-correcting codes have been proposed as toy models that describe key aspect...
In the long-standing quest to reconcile gravity with quantum mechanics, profound connections have be...
This article reviews the progress in our understanding of the reconstruction of the bulk spacetime i...
Holographic tensor networks associated to tilings of (1+1)-dimensional de Sitter spacetime are intro...
The theory of random tensors is expanding rapidly in scope. At the combinatorial (zero dimensional) ...
Recent progress in studies of holographic dualities, originally motivated by insights from string th...
The holographic principle has been a central theme in most of the progress in the field of quantum g...
Holographic quantum-error correcting codes are models of bulk/boundary dualities such as the anti-de...
We propose a family of exactly solvable toy models for the AdS/CFT correspondence based on a novel c...
Holographic quantum-error correcting codes are models of bulk/boundary dualities such as the anti-de...
Abstract Random tensor networks provide useful models that incorporate various important features of...
The AdS/CFT correspondence realises the holographic principle where information in the bulk of a spa...
Tensor networks provide an efficient classical representation of certain strongly correlated quantum...
We give a pedagogical review of how concepts from quantum information theory build up the gravitatio...
In the long-standing quest to reconcile gravity with quantum mechanics, profound connections have be...
Holographic quantum error-correcting codes have been proposed as toy models that describe key aspect...
In the long-standing quest to reconcile gravity with quantum mechanics, profound connections have be...
This article reviews the progress in our understanding of the reconstruction of the bulk spacetime i...
Holographic tensor networks associated to tilings of (1+1)-dimensional de Sitter spacetime are intro...
The theory of random tensors is expanding rapidly in scope. At the combinatorial (zero dimensional) ...