A new approach to the many-electron atom, based on the formal equivalence between the Hartree-Fock equations and a quantum-mechanical generalization of the collisionless Boltzmann (Vlasov) equation, is presented. This equivalence casts the problem into the framework of conventional plasma theory, the Vlasov equation being merely replaced by its quantum-mechanical analog. The quantum Vlasov equation permits a straightforward expansion of the quantum-mechanical phase space distribution function in powers of h. The first step of this expansion, corresponding physically to a classical correlationless plasma obeying Fermi statistics, leads to the Thomas-Fermi model. Successive steps generate quantum and exchange corrections. The method is applie...
A new simple form for the atomic kinetic energy-density functional (t) is proposed as a sum of the T...
By introducing a modified Weizsacker correction, a relativistic Thomas-Fermi theory is developed wit...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
Texto completo: acesso restrito. p.552–562An electronic system is considered as a quantum plasma cha...
This thesis is about developing and studying quantum mechanical models of plasmas. Quantum effects c...
International audienceDensity effects in ionized matter require particular attention since they modi...
As is well known, for plasmas of high density and modest temperature, the classical kinetic theory n...
International audienceIn the present study, we derive from kinetic theory a unified fluid model for ...
Starting from the quantum-Boltzmann equation derived in a previous paper, we study the irreversible ...
In the present contribution, we derive from kinetic theory a unified fluid model for multicomponent ...
A new density-functional equation is suggested for the direct calculation of electron density ρ...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
A fully analytical approximation for the observable characteristics of many-electron atoms is develo...
In the framework of non-equilibrium statistical mechanics, we describe atoms as an assembly of nucle...
Starting from quantum kinetic theory for ideal plasmas with exchange effects, the quantum hydrodynam...
A new simple form for the atomic kinetic energy-density functional (t) is proposed as a sum of the T...
By introducing a modified Weizsacker correction, a relativistic Thomas-Fermi theory is developed wit...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
Texto completo: acesso restrito. p.552–562An electronic system is considered as a quantum plasma cha...
This thesis is about developing and studying quantum mechanical models of plasmas. Quantum effects c...
International audienceDensity effects in ionized matter require particular attention since they modi...
As is well known, for plasmas of high density and modest temperature, the classical kinetic theory n...
International audienceIn the present study, we derive from kinetic theory a unified fluid model for ...
Starting from the quantum-Boltzmann equation derived in a previous paper, we study the irreversible ...
In the present contribution, we derive from kinetic theory a unified fluid model for multicomponent ...
A new density-functional equation is suggested for the direct calculation of electron density ρ...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
A fully analytical approximation for the observable characteristics of many-electron atoms is develo...
In the framework of non-equilibrium statistical mechanics, we describe atoms as an assembly of nucle...
Starting from quantum kinetic theory for ideal plasmas with exchange effects, the quantum hydrodynam...
A new simple form for the atomic kinetic energy-density functional (t) is proposed as a sum of the T...
By introducing a modified Weizsacker correction, a relativistic Thomas-Fermi theory is developed wit...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...