Ground-state entanglement entropies were investigated for the one-dimension quantum two- and three-spin interaction models, the four-state Potts model, and the XXZ model with uniaxial single-ion-type anisotropy, which were obtained on an infinite-size lattice in one spatial dimension. Thus we show that the entanglement, a key concept of quantum information science, is quantified by the ground-state entanglement entropy. The relationships between ground-state entanglement entropy and quantum phase transition was analyzed. These results were obtained using the infinite matrix product state algorithm which works in the thermodynamical limit
Abstract We consider entanglement of first-quantized identical particles by adopting an algebraic ap...
We investigate the von Neumann entanglement entropy as function of the size of a subsystem for permu...
We investigate the von Neumann entanglement entropy as function of the size of a subsystem for permu...
Physical interactions in quantum many-body systems are typically local: Individual constituents inte...
We introduce a systematic framework for calculating the bipartite entanglement entropy of a compact ...
We introduce a systematic framework for calculating the bipartite entanglement entropy of a compact ...
We study quantum phase transition of interacting fermions by measuring the local entanglement entrop...
We introduce a systematic framework to calculate the bipartite entanglement entropy of a compact spa...
The constituents of a quantum many-body system can be inextricably linked, a phenomenon known as qua...
UnrestrictedIn this thesis, the scaling behavior of entanglement is investigated in quantum systems ...
We investigate the von Neumann entanglement entropy as function of the size of a subsystem for permu...
We study the entanglement properties of the ground state in Kitaev's model. This is a two-dimensiona...
In this paper, we discuss a novel method based on a quantum-information-tool suitable to identify a...
We study the entanglement properties of the ground state in Kitaev's model. This is a two-dimensiona...
We study the entanglement properties of the ground state in Kitaev's model. This is a two-dimensiona...
Abstract We consider entanglement of first-quantized identical particles by adopting an algebraic ap...
We investigate the von Neumann entanglement entropy as function of the size of a subsystem for permu...
We investigate the von Neumann entanglement entropy as function of the size of a subsystem for permu...
Physical interactions in quantum many-body systems are typically local: Individual constituents inte...
We introduce a systematic framework for calculating the bipartite entanglement entropy of a compact ...
We introduce a systematic framework for calculating the bipartite entanglement entropy of a compact ...
We study quantum phase transition of interacting fermions by measuring the local entanglement entrop...
We introduce a systematic framework to calculate the bipartite entanglement entropy of a compact spa...
The constituents of a quantum many-body system can be inextricably linked, a phenomenon known as qua...
UnrestrictedIn this thesis, the scaling behavior of entanglement is investigated in quantum systems ...
We investigate the von Neumann entanglement entropy as function of the size of a subsystem for permu...
We study the entanglement properties of the ground state in Kitaev's model. This is a two-dimensiona...
In this paper, we discuss a novel method based on a quantum-information-tool suitable to identify a...
We study the entanglement properties of the ground state in Kitaev's model. This is a two-dimensiona...
We study the entanglement properties of the ground state in Kitaev's model. This is a two-dimensiona...
Abstract We consider entanglement of first-quantized identical particles by adopting an algebraic ap...
We investigate the von Neumann entanglement entropy as function of the size of a subsystem for permu...
We investigate the von Neumann entanglement entropy as function of the size of a subsystem for permu...