A quantum phase transition (QPT) in a simple model that describes the coexistence of atoms and diatomic molecules is studied. The model, which is briefly discussed, presents a second-order ground state phase transition in the thermodynamic (or large particle number) limit, changing from a molecular condensate in one phase to an equilibrium of diatomic molecules–atoms in coexistence in the other one. The usual markers for this phase transition are the ground state energy and the expected value of the number of atoms (alternatively, the number of molecules) in the ground state. In this work, other markers for the QPT, such as the inverse participation ratio (IPR), and particularly, the Rényi entropy, are analyzed and proposed as QPT markers. ...
<p><strong>Figure 3.</strong> The total population of atoms (ρ<sub><em>a</em></sub> = 1 − 2ρ<sub><em...
We investigate the quantum phase transition in an ultracold atom-molecule conversion system. It is f...
Quantum phase transitions describe the behaviour of quantum systems as a function of one or several ...
A quantum phase transition (QPT) in a simple model that describes the coexistence of atoms and diato...
We study the quantum phase transitions of a model that describes the interconversion of interacting ...
<p><strong>Figure 1.</strong> (a) The population of molecules ρ<sub><em>b</em></sub> versus the tran...
We adopt a three-level bosonic model to investigate the quantum phase transition in an ultracold ato...
We introduce a measure called reduced entropy of sublattice to quantify entanglement in spin, electr...
A simple two-qubit model showing Quantum Phase Transitions as a consequence of ground state level cr...
We study the two-orbital Hubbard model in the limit of vanishing kinetic energy. The phase diagram i...
We study the two-orbital Hubbard model in the limit of vanishing kinetic energy. The phase diagram i...
A simple two-qubit model showing quantum phase transitions as a consequence of ground-state-level cr...
<p><strong>Figure 6.</strong> (a) The first-order derivative of the entanglement entropy for the gro...
We introduce a new measure called reduced entropy of sublattice to quantify entanglement in spin, el...
Exactly solvable models provide a unique method, via qualitative changes in the distribution of the ...
<p><strong>Figure 3.</strong> The total population of atoms (ρ<sub><em>a</em></sub> = 1 − 2ρ<sub><em...
We investigate the quantum phase transition in an ultracold atom-molecule conversion system. It is f...
Quantum phase transitions describe the behaviour of quantum systems as a function of one or several ...
A quantum phase transition (QPT) in a simple model that describes the coexistence of atoms and diato...
We study the quantum phase transitions of a model that describes the interconversion of interacting ...
<p><strong>Figure 1.</strong> (a) The population of molecules ρ<sub><em>b</em></sub> versus the tran...
We adopt a three-level bosonic model to investigate the quantum phase transition in an ultracold ato...
We introduce a measure called reduced entropy of sublattice to quantify entanglement in spin, electr...
A simple two-qubit model showing Quantum Phase Transitions as a consequence of ground state level cr...
We study the two-orbital Hubbard model in the limit of vanishing kinetic energy. The phase diagram i...
We study the two-orbital Hubbard model in the limit of vanishing kinetic energy. The phase diagram i...
A simple two-qubit model showing quantum phase transitions as a consequence of ground-state-level cr...
<p><strong>Figure 6.</strong> (a) The first-order derivative of the entanglement entropy for the gro...
We introduce a new measure called reduced entropy of sublattice to quantify entanglement in spin, el...
Exactly solvable models provide a unique method, via qualitative changes in the distribution of the ...
<p><strong>Figure 3.</strong> The total population of atoms (ρ<sub><em>a</em></sub> = 1 − 2ρ<sub><em...
We investigate the quantum phase transition in an ultracold atom-molecule conversion system. It is f...
Quantum phase transitions describe the behaviour of quantum systems as a function of one or several ...