We consider recent results on the use of the single-site entanglement measure for identifying and characterizing a quantum phase transition in systems of interacting fermions. We discuss the extension of these results to fermionic models where the single-site entanglement may fail to signal a quantum phase transition, with particular attention given to the one-dimensional extendedUV Hubbard model
Entanglement, one of the most intriguing features of quantum theory and a main resource in quantum i...
Entanglement, one of the most intriguing features of quantum theory and a main resource in quantum i...
We investigate the quantum entanglement-related features of the many-body model of Plastino and Mosz...
The constituents of a quantum many-body system can be inextricably linked, a phenomenon known as qua...
We analyze correlations between subsystems for an extended Hubbard model exactly solvable in one dim...
We study quantum phase transition of interacting fermions by measuring the local entanglement entrop...
What entanglement is present in naturally occurring physical systems at thermal equilibrium? Most su...
The recent interest in aspects common to quantum information and condensed matter has prompted a pro...
Entanglement is a key aspect of quantum mechanics, and arguably the clearest manifestation of the no...
We introduce a measure called reduced entropy of sublattice to quantify entanglement in spin, electr...
Entanglement are the non-local correlations permitted by quantum theory, believed to play a fundamen...
We analyze the problem of quantifying entanglement in pure and mixed states of fermionic systems wit...
Knowledge of the entanglement properties of the wave functions commonly used to describe quantum man...
We analyze the problem of quantifying entanglement in pure and mixed states of fermionic systems wit...
Entanglement, one of the most intriguing features of quantum theory and a main resource in quantum i...
Entanglement, one of the most intriguing features of quantum theory and a main resource in quantum i...
Entanglement, one of the most intriguing features of quantum theory and a main resource in quantum i...
We investigate the quantum entanglement-related features of the many-body model of Plastino and Mosz...
The constituents of a quantum many-body system can be inextricably linked, a phenomenon known as qua...
We analyze correlations between subsystems for an extended Hubbard model exactly solvable in one dim...
We study quantum phase transition of interacting fermions by measuring the local entanglement entrop...
What entanglement is present in naturally occurring physical systems at thermal equilibrium? Most su...
The recent interest in aspects common to quantum information and condensed matter has prompted a pro...
Entanglement is a key aspect of quantum mechanics, and arguably the clearest manifestation of the no...
We introduce a measure called reduced entropy of sublattice to quantify entanglement in spin, electr...
Entanglement are the non-local correlations permitted by quantum theory, believed to play a fundamen...
We analyze the problem of quantifying entanglement in pure and mixed states of fermionic systems wit...
Knowledge of the entanglement properties of the wave functions commonly used to describe quantum man...
We analyze the problem of quantifying entanglement in pure and mixed states of fermionic systems wit...
Entanglement, one of the most intriguing features of quantum theory and a main resource in quantum i...
Entanglement, one of the most intriguing features of quantum theory and a main resource in quantum i...
Entanglement, one of the most intriguing features of quantum theory and a main resource in quantum i...
We investigate the quantum entanglement-related features of the many-body model of Plastino and Mosz...