Consider the free energy of a d-dimensional gas in canonical equilibrium under pairwise repulsive interaction and global confinement, in presence of a volume constraint. When the volume of the gas is forced away from its typical value, the system undergoes a phase transition of the third order separating two phases (pulled and pushed). We prove this result (i) for the eigenvalues of one-cut, off-critical random matrices (log-gas in dimension d= 1) with hard walls; (ii) in arbitrary dimension d≥ 1 for a gas with Yukawa interaction (aka screened Coulomb gas) in a generic confining potential. The latter class includes systems with Coulomb (long range) and delta (zero range) repulsion as limiting cases. In both cases, we obtain an exact formula...
We investigate a hard-square lattice gas on the square lattice by means of transfer-matrix and Monte...
We obtain the phase diagram of fully-packed hard plates on a cubic lattice. Each plate covers an ele...
Using transfer matrix and finite-size scaling methods, we study the thermodynamic behavior of a latt...
Consider the free energy of a d-dimensional gas in canonical equilibrium under pairwise repulsive in...
We consider a d-dimensional gas in canonical equilibrium under pairwise screened Coulomb repulsion a...
The free energy at zero temperature of Coulomb gas systems in generic dimension is considered as a f...
International audienceWe study the distribution of the position of the rightmost particle x $_{max}$...
We solve a model of phase separation among two competing phases frustrated by the long-range Coulomb...
Random matrix theory (RMT) offers a powerful theoretical framework to model disordered systems. The ...
The existence of a phase transition in a three-dimensional lattice gas of hard molecules is investig...
The existence of phase transitions in triangular lattice gases of hard molecules with second- and th...
ABSTRACT: We present quantum phase transitions and critical phenomena at the large-dimension (D) lim...
26 pages, 7 figuresInternational audienceWe consider the theory of the glass phase and jamming of ha...
We consider the theory of the glass phase and jamming of hard spheres in the large space dimension l...
We introduce a family of boundary confinements for Coulomb gas ensembles, and study them in the two-...
We investigate a hard-square lattice gas on the square lattice by means of transfer-matrix and Monte...
We obtain the phase diagram of fully-packed hard plates on a cubic lattice. Each plate covers an ele...
Using transfer matrix and finite-size scaling methods, we study the thermodynamic behavior of a latt...
Consider the free energy of a d-dimensional gas in canonical equilibrium under pairwise repulsive in...
We consider a d-dimensional gas in canonical equilibrium under pairwise screened Coulomb repulsion a...
The free energy at zero temperature of Coulomb gas systems in generic dimension is considered as a f...
International audienceWe study the distribution of the position of the rightmost particle x $_{max}$...
We solve a model of phase separation among two competing phases frustrated by the long-range Coulomb...
Random matrix theory (RMT) offers a powerful theoretical framework to model disordered systems. The ...
The existence of a phase transition in a three-dimensional lattice gas of hard molecules is investig...
The existence of phase transitions in triangular lattice gases of hard molecules with second- and th...
ABSTRACT: We present quantum phase transitions and critical phenomena at the large-dimension (D) lim...
26 pages, 7 figuresInternational audienceWe consider the theory of the glass phase and jamming of ha...
We consider the theory of the glass phase and jamming of hard spheres in the large space dimension l...
We introduce a family of boundary confinements for Coulomb gas ensembles, and study them in the two-...
We investigate a hard-square lattice gas on the square lattice by means of transfer-matrix and Monte...
We obtain the phase diagram of fully-packed hard plates on a cubic lattice. Each plate covers an ele...
Using transfer matrix and finite-size scaling methods, we study the thermodynamic behavior of a latt...