The modular (or entanglement) Hamiltonian correspondent to the half-space bipartition of a quantum state uniquely characterizes its entanglement properties. However, in the context of lattice models, its explicit form is analytically known only for the two spin chains and certain free theories in one dimension. In this work, we provide a thorough investigation of entanglement Hamiltonians in lattice models obtained via the Bisognano-Wichmann theorem, which provides an explicit functional form for the entanglement Hamiltonian itself in quantum field theory. Our study encompasses a variety of one- and two-dimensional models, supporting diverse quantum phases and critical points, and, most importantly, scanning several universality classes, in...
Knowledge of the entanglement properties of the wave functions commonly used to describe quantum man...
In this thesis we present new results relevant to two important problems in quantum information scie...
In the thesis, we discuss some aspects of 1D quantum systems related to entanglement entropies; in p...
The modular (or entanglement) Hamiltonian correspondent to the half-space bipartition of a quantum s...
We carry out a comprehensive comparison between the exact modular Hamiltonian and the lattice versio...
We review results about entanglement (or modular) Hamiltonians of quantum many-body systems in field...
International audienceWe review results about entanglement (or modular) Hamiltonians of quantum many...
We study the temporal evolution of the entanglement Hamiltonian of an interval after a global quantu...
Entanglement is arguably the most puzzling yet fundamental aspect of quantum mechanics. Over the las...
We present a method to measure the von Neumann entanglement entropy of ground states of quantum many...
Entanglement is the fundamental difference between classical and quantum systems and has become one ...
A microscopic calculation of ground state entanglement for the XY and Heisenberg models shows the e...
At the interface of quantum information and condensed matter physics, the study of entanglement in q...
We study the entanglement Hamiltonian for finite intervals in infinite quantum chains for two differ...
Entanglement are the non-local correlations permitted by quantum theory, believed to play a fundamen...
Knowledge of the entanglement properties of the wave functions commonly used to describe quantum man...
In this thesis we present new results relevant to two important problems in quantum information scie...
In the thesis, we discuss some aspects of 1D quantum systems related to entanglement entropies; in p...
The modular (or entanglement) Hamiltonian correspondent to the half-space bipartition of a quantum s...
We carry out a comprehensive comparison between the exact modular Hamiltonian and the lattice versio...
We review results about entanglement (or modular) Hamiltonians of quantum many-body systems in field...
International audienceWe review results about entanglement (or modular) Hamiltonians of quantum many...
We study the temporal evolution of the entanglement Hamiltonian of an interval after a global quantu...
Entanglement is arguably the most puzzling yet fundamental aspect of quantum mechanics. Over the las...
We present a method to measure the von Neumann entanglement entropy of ground states of quantum many...
Entanglement is the fundamental difference between classical and quantum systems and has become one ...
A microscopic calculation of ground state entanglement for the XY and Heisenberg models shows the e...
At the interface of quantum information and condensed matter physics, the study of entanglement in q...
We study the entanglement Hamiltonian for finite intervals in infinite quantum chains for two differ...
Entanglement are the non-local correlations permitted by quantum theory, believed to play a fundamen...
Knowledge of the entanglement properties of the wave functions commonly used to describe quantum man...
In this thesis we present new results relevant to two important problems in quantum information scie...
In the thesis, we discuss some aspects of 1D quantum systems related to entanglement entropies; in p...