We compute exactly the von Neumann entanglement entropy of the eta-pairing states - a large set of exact excited eigenstates of the Hubbard Hamiltonian. For the singlet eta-pairing states the entropy scales with the logarithm of the spatial dimension of the (smaller) partition. For the eta-pairing states with finite spin magnetization density, the leading term can scale as the volume or as the area-times-log, depending on the momentum space occupation of the Fermions with flipped spins. We also compute the corrections to the leading scaling. In order to study the eigenstate thermalization hypothesis (ETH), we also compute the entanglement Renyi entropies of such states and compare them with the corresponding entropies of thermal de...
We study the possible breakdown of quantum thermalization in a model of itinerant electrons on a one...
We study quantum phase transition of interacting fermions by measuring the local entanglement entrop...
The entanglement and localization in eigenstates of strongly chaotic subsystems are studied as a fun...
The eigenstate thermalization hypothesis (ETH) posits that the reduced density matrix for a subsyste...
Motivated by the qualitative picture of canonical typicality, we propose a refined formulation of th...
A very fundamental problem in quantum statistical mechanics involves whether—and how—an isolated qua...
The average entanglement entropy (EE) of the energy eigenstates in non-vanishing partitions has been...
In order to investigate subsystem eigenstate thermalization hypothesis (ETH) for two-dimensional lar...
Understanding the evolution towards thermal equilibrium of an iso-lated quantum system is at the fou...
Simulating the von Neumann and second-order Rényi entropies of driven Mott insulators, we examine th...
We study the entanglement entropy of a block of contiguous spins in excited states of spin chains. W...
We study the quantum Fisher information (QFI) and, thus, the multipartite entanglement structure of ...
We study the entanglement entropy of eigenstates (including the ground state) of the Sachdev-Ye-Kita...
Motivated by the qualitative picture of canonical typicality, we propose a refined formulation of th...
We ask whether the eigenstate thermalization hypothesis (ETH) is valid in a strong sense: in the lim...
We study the possible breakdown of quantum thermalization in a model of itinerant electrons on a one...
We study quantum phase transition of interacting fermions by measuring the local entanglement entrop...
The entanglement and localization in eigenstates of strongly chaotic subsystems are studied as a fun...
The eigenstate thermalization hypothesis (ETH) posits that the reduced density matrix for a subsyste...
Motivated by the qualitative picture of canonical typicality, we propose a refined formulation of th...
A very fundamental problem in quantum statistical mechanics involves whether—and how—an isolated qua...
The average entanglement entropy (EE) of the energy eigenstates in non-vanishing partitions has been...
In order to investigate subsystem eigenstate thermalization hypothesis (ETH) for two-dimensional lar...
Understanding the evolution towards thermal equilibrium of an iso-lated quantum system is at the fou...
Simulating the von Neumann and second-order Rényi entropies of driven Mott insulators, we examine th...
We study the entanglement entropy of a block of contiguous spins in excited states of spin chains. W...
We study the quantum Fisher information (QFI) and, thus, the multipartite entanglement structure of ...
We study the entanglement entropy of eigenstates (including the ground state) of the Sachdev-Ye-Kita...
Motivated by the qualitative picture of canonical typicality, we propose a refined formulation of th...
We ask whether the eigenstate thermalization hypothesis (ETH) is valid in a strong sense: in the lim...
We study the possible breakdown of quantum thermalization in a model of itinerant electrons on a one...
We study quantum phase transition of interacting fermions by measuring the local entanglement entrop...
The entanglement and localization in eigenstates of strongly chaotic subsystems are studied as a fun...