A lattice-gas model with two types of particles, a particle-dependent short-range coupling and a long-range repulsive Coulombic interaction, is introduced. The phase diagram of an isolated finite system of 129 particles is constructed using the bimodality properties of the observables' distribution. We show that this generic Hamiltonian, with couplings optimized on the properties of the atomic nucleus, exhibits a specific phase diagram including, together with the well-known liquid-gas phase transition, a segregation phase that can be assimilated to nuclear fission
AbstractWe study a purely repulsive lattice gas model. The chemical versus temperature phase diagram...
The liquid-gas phase transition in finite systems is studied within a lattice gas model in the canon...
The liquid-gas phase transition in finite systems is studied within a lattice gas model in the canon...
A lattice-gas model with two types of particles, a particle-dependent short-range coupling and a lon...
The effect of the Coulomb interaction on the phase diagram of finite nuclei is studied within the Ca...
The effect of the Coulomb interaction on the phase diagram of finite nuclei is studied within the Ca...
We study the cluster properties of the lattice-gas model (isomorphous to the usual ferromagnetic Isi...
We study the cluster properties of the lattice-gas model (isomorphous to the usual ferromagnetic Isi...
The finite size of nuclei and the Coulomb interaction make it difficult to describe systems interact...
We study the nuclear liquid-gas phase transition on the basis of a two-component lattice gas model. ...
Two different lattice models of hard-core molecules with attractions are discussed. Both of them ref...
12 pages, 7 figures.-- PACS nrs.: 61.20.Gy, 65.20.-w.-- ArXiv pre-print available at: http://arxiv.o...
The liquid-gas phase transition in finite systems is studied within a lattice gas model in the canon...
We extend a previously studied lattice model of particles with infinite repulsions to the case of fi...
The liquid-gas phase transition in finite systems is studied within a lattice gas model in the canon...
AbstractWe study a purely repulsive lattice gas model. The chemical versus temperature phase diagram...
The liquid-gas phase transition in finite systems is studied within a lattice gas model in the canon...
The liquid-gas phase transition in finite systems is studied within a lattice gas model in the canon...
A lattice-gas model with two types of particles, a particle-dependent short-range coupling and a lon...
The effect of the Coulomb interaction on the phase diagram of finite nuclei is studied within the Ca...
The effect of the Coulomb interaction on the phase diagram of finite nuclei is studied within the Ca...
We study the cluster properties of the lattice-gas model (isomorphous to the usual ferromagnetic Isi...
We study the cluster properties of the lattice-gas model (isomorphous to the usual ferromagnetic Isi...
The finite size of nuclei and the Coulomb interaction make it difficult to describe systems interact...
We study the nuclear liquid-gas phase transition on the basis of a two-component lattice gas model. ...
Two different lattice models of hard-core molecules with attractions are discussed. Both of them ref...
12 pages, 7 figures.-- PACS nrs.: 61.20.Gy, 65.20.-w.-- ArXiv pre-print available at: http://arxiv.o...
The liquid-gas phase transition in finite systems is studied within a lattice gas model in the canon...
We extend a previously studied lattice model of particles with infinite repulsions to the case of fi...
The liquid-gas phase transition in finite systems is studied within a lattice gas model in the canon...
AbstractWe study a purely repulsive lattice gas model. The chemical versus temperature phase diagram...
The liquid-gas phase transition in finite systems is studied within a lattice gas model in the canon...
The liquid-gas phase transition in finite systems is studied within a lattice gas model in the canon...