<p><strong>Figure 4.</strong> (a) Energy gap between the first excited state and the ground state versus the atomic transition strength <em>J</em> for different particle numbers <em>N</em>. (b) The finite-size scaling behaviours of Δ<em>J</em> = <em>J<sub>N</sub></em> − <em>J</em><sub>c</sub> with δ<sub><em>G</em></sub> = 2/3 and (c) Δ<em>E</em><sub>min</sub> with μ = 1/3 for different atomic interaction \widetilde{U}, where the discrete points denote the numerical results for finite particle numbers <em>N</em> = [130, 270], and the solid lines are the fitting functions. (d) The finite-size scaling analysis of the energy gap Δ<em>E</em> with \widetilde{U}=2g for different system sizes <em>N</em> = 130, 150, 170, 190, 210, where ν = 2/3, J_N...
Symmetry breaking of electronic structure configurations resemble classical phase transitions. Finit...
The evolution of system observables at critical points of quantum phase transitions in atomic nuclei...
<p><b>Table 5.</b> The 2s<em>n</em>p threshold energy (<em>E</em><sub>limit</sub>) and quantum defec...
<p><strong>Figure 2.</strong> Atomic transition strength (<em>J</em>) profiles of the energy gap bet...
<p><strong>Figure 5.</strong> (a) The fidelity susceptibility for the ground state as a function of ...
<p><strong>Figure 3.</strong> The total population of atoms (ρ<sub><em>a</em></sub> = 1 − 2ρ<sub><em...
<p><strong>Figure 1.</strong> (a) The population of molecules ρ<sub><em>b</em></sub> versus the tran...
<p><strong>Figure 6.</strong> (a) The first-order derivative of the entanglement entropy for the gro...
We adopt a three-level bosonic model to investigate the quantum phase transition in an ultracold ato...
A system of neutral atoms trapped in an optical lattice and dispersively coupled to the field of an ...
We study the quantum phase transitions of a model that describes the interconversion of interacting ...
A quantum phase transition (QPT) in a simple model that describes the coexistence of atoms and diato...
Minima in the generalized oscillator strength GOS and the convergence of the GOS to the first Born a...
We use the ® nite size scaling method to study the critical points, points of non-analyticity, of th...
Two-level atoms interacting with a one mode cavity field at zero temperature have order parameters w...
Symmetry breaking of electronic structure configurations resemble classical phase transitions. Finit...
The evolution of system observables at critical points of quantum phase transitions in atomic nuclei...
<p><b>Table 5.</b> The 2s<em>n</em>p threshold energy (<em>E</em><sub>limit</sub>) and quantum defec...
<p><strong>Figure 2.</strong> Atomic transition strength (<em>J</em>) profiles of the energy gap bet...
<p><strong>Figure 5.</strong> (a) The fidelity susceptibility for the ground state as a function of ...
<p><strong>Figure 3.</strong> The total population of atoms (ρ<sub><em>a</em></sub> = 1 − 2ρ<sub><em...
<p><strong>Figure 1.</strong> (a) The population of molecules ρ<sub><em>b</em></sub> versus the tran...
<p><strong>Figure 6.</strong> (a) The first-order derivative of the entanglement entropy for the gro...
We adopt a three-level bosonic model to investigate the quantum phase transition in an ultracold ato...
A system of neutral atoms trapped in an optical lattice and dispersively coupled to the field of an ...
We study the quantum phase transitions of a model that describes the interconversion of interacting ...
A quantum phase transition (QPT) in a simple model that describes the coexistence of atoms and diato...
Minima in the generalized oscillator strength GOS and the convergence of the GOS to the first Born a...
We use the ® nite size scaling method to study the critical points, points of non-analyticity, of th...
Two-level atoms interacting with a one mode cavity field at zero temperature have order parameters w...
Symmetry breaking of electronic structure configurations resemble classical phase transitions. Finit...
The evolution of system observables at critical points of quantum phase transitions in atomic nuclei...
<p><b>Table 5.</b> The 2s<em>n</em>p threshold energy (<em>E</em><sub>limit</sub>) and quantum defec...