Holographic complexity proposals have sparked interest in quantifying the cost of state preparation in quantum field theories and its possible dual gravitational manifestations. The most basic ingredient in defining complexity is the notion of a class of circuits that, when acting on a given reference state, all produce a desired target state. In the present work we build on studies of circuits performing local conformal transformations in general two-dimensional conformal field theories and construct the exact gravity dual to such circuits. In our approach to holographic complexity, the gravity dual to the optimal circuit is the one that minimizes an externally chosen cost assigned to each circuit. Our results provide a basis for studying ...
In this note we investigate the role of Lloyd’s computational bound in holographic complexity. Our g...
Quantum circuit complexity has played a central role in recent advances in holography and many-body ...
The holographic duality renders a way to encode certain quantum information in a semi-classical grav...
Holographic complexity proposals have sparked interest in quantifying thecost of state preparation i...
We propose that finite cutoff regions of holographic spacetimes represent quantum circuits that map ...
Abstract We propose that holographic spacetimes can be regarded as collections of quantum circuits b...
We initiate quantitative studies of complexity in (1+1)-dimensional conformal field theories with a ...
Motivated by recent studies of holographic complexity, we examine the question of circuit complexity...
It is assumed that the holographic complexities such as the complexity-action (CA) and the complexit...
Early efforts to understand complexity in field theory have primarily employed a geometric approach ...
Holographic dualities like AdS/CFT provide a non-perturbative definition of a bulk theory of quantum...
We give a pedagogical review of how concepts from quantum information theory build up the gravitatio...
We investigate the extension of a holographic construction for the entanglement negativity of two di...
The AdS/CFT correspondence relates quantum gravity in asymptotically AdS spacetimes to conformal fie...
Many interesting phenomena, such as high-temperature superconductivity and the quark-gluon plasma, s...
In this note we investigate the role of Lloyd’s computational bound in holographic complexity. Our g...
Quantum circuit complexity has played a central role in recent advances in holography and many-body ...
The holographic duality renders a way to encode certain quantum information in a semi-classical grav...
Holographic complexity proposals have sparked interest in quantifying thecost of state preparation i...
We propose that finite cutoff regions of holographic spacetimes represent quantum circuits that map ...
Abstract We propose that holographic spacetimes can be regarded as collections of quantum circuits b...
We initiate quantitative studies of complexity in (1+1)-dimensional conformal field theories with a ...
Motivated by recent studies of holographic complexity, we examine the question of circuit complexity...
It is assumed that the holographic complexities such as the complexity-action (CA) and the complexit...
Early efforts to understand complexity in field theory have primarily employed a geometric approach ...
Holographic dualities like AdS/CFT provide a non-perturbative definition of a bulk theory of quantum...
We give a pedagogical review of how concepts from quantum information theory build up the gravitatio...
We investigate the extension of a holographic construction for the entanglement negativity of two di...
The AdS/CFT correspondence relates quantum gravity in asymptotically AdS spacetimes to conformal fie...
Many interesting phenomena, such as high-temperature superconductivity and the quark-gluon plasma, s...
In this note we investigate the role of Lloyd’s computational bound in holographic complexity. Our g...
Quantum circuit complexity has played a central role in recent advances in holography and many-body ...
The holographic duality renders a way to encode certain quantum information in a semi-classical grav...