AbstractWe use an estimator of quantum criticality based on the entanglement entropy to discuss the ground state properties of the 1D anisotropic Kondo necklace model. We found that the T=0 phase diagram of the model is described by a critical line separating an antiferromagnetic phase from a Kondo singlet state. Moreover we calculate the conformal anomaly on the critical line and obtain that c tends to 0.5 as the thermodynamic limit is reached. Hence we conclude that these transitions belong to Ising universality class being, therefore, second order transitions instead of infinite order as claimed before
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...
The effect of a local Kondo coupling and Hubbard interaction on the topological phase of the one-dim...
AbstractWe use an estimator of quantum criticality based on the entanglement entropy to discuss the ...
We use the density matrix renormalization group to study the quantum critical behavior of a one-dime...
A real-space renormalization-group approach is used to investigate the zero temperature phase diagra...
The interplay of the constituents of interacting many-body systems may reveal emergent properties on...
We establish the phase diagram of the one-dimensional anisotropic Kondo lattice model at T=0 using a...
What entanglement is present in naturally occurring physical systems at thermal equilibrium? Most su...
Considerable efforts have been made in recent years to theoretically understand quantum phase transi...
Order parameters are key to our understanding of phases of matter. Not only do they allow one to cla...
Heavy-fermion systems represent a prototypical setting to study magnetic quantum phase transitions. ...
This thesis investigates the properties of entanglement in one-dimensional many-body systems. In the...
Entanglement, one of the most intriguing features of quantum theory and a main resource in quantum i...
We revisit the physics of a Kondo impurity coupled to a fermionic host with a diverging power-law de...
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...
The effect of a local Kondo coupling and Hubbard interaction on the topological phase of the one-dim...
AbstractWe use an estimator of quantum criticality based on the entanglement entropy to discuss the ...
We use the density matrix renormalization group to study the quantum critical behavior of a one-dime...
A real-space renormalization-group approach is used to investigate the zero temperature phase diagra...
The interplay of the constituents of interacting many-body systems may reveal emergent properties on...
We establish the phase diagram of the one-dimensional anisotropic Kondo lattice model at T=0 using a...
What entanglement is present in naturally occurring physical systems at thermal equilibrium? Most su...
Considerable efforts have been made in recent years to theoretically understand quantum phase transi...
Order parameters are key to our understanding of phases of matter. Not only do they allow one to cla...
Heavy-fermion systems represent a prototypical setting to study magnetic quantum phase transitions. ...
This thesis investigates the properties of entanglement in one-dimensional many-body systems. In the...
Entanglement, one of the most intriguing features of quantum theory and a main resource in quantum i...
We revisit the physics of a Kondo impurity coupled to a fermionic host with a diverging power-law de...
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...
The effect of a local Kondo coupling and Hubbard interaction on the topological phase of the one-dim...