AbstractWe study the time evolution of a system of N spinless fermions in R3 which interact through a pair potential, e.g., the Coulomb potential. We compare the dynamics given by the solution to Schrödinger's equation with the time-dependent Hartree–Fock approximation, and we give an estimate for the accuracy of this approximation in terms of the kinetic energy of the system. This leads, in turn, to bounds in terms of the initial total energy of the system
AbstractThis paper deals with the numerical solution of the time-dependent Schrödinger–Poisson syste...
The derivation of effective evolution equations is central to the study of non-stationary quantum ma...
International audienceNeutron scattering measurements at the Institut Laue-Langevin off quasi-twodim...
We study the time evolution of a system of N spinless fermions in R3 which interact through a pair p...
AbstractWe study the time evolution of a system of N spinless fermions in R3 which interact through ...
35 pagesWe study the time evolution of a system of $N$ spinless fermions in $\mathbb{R}^3$ which int...
While Hartree–Fock theory is well established as a fundamental approximation for interacting fermion...
While Hartree–Fock theory is well established as a fundamental approximation for interacting fermion...
AbstractThe time-dependent Hartree–Fock equations are derived from the N-body linear Schrödinger equ...
Recently the leading order of the correlation energy of a Fermi gas in a coupled mean-field and semi...
We study the many body Schrödinger evolution of weakly coupled fermions interacting through a Coulom...
A simplified version of the Wigner--transformed time--dependent Hartree--Fock--Bogoliubov equations,...
In this paper we study the dynamics of fermionic mixed states in the mean-field regime. We consider ...
We present microscopic derivations of the defocusing two-dimensional cubic nonlinear Schrödinger equ...
We extend the derivation of the time-dependent Hartree-Fock equation recently obtained by Benedikter...
AbstractThis paper deals with the numerical solution of the time-dependent Schrödinger–Poisson syste...
The derivation of effective evolution equations is central to the study of non-stationary quantum ma...
International audienceNeutron scattering measurements at the Institut Laue-Langevin off quasi-twodim...
We study the time evolution of a system of N spinless fermions in R3 which interact through a pair p...
AbstractWe study the time evolution of a system of N spinless fermions in R3 which interact through ...
35 pagesWe study the time evolution of a system of $N$ spinless fermions in $\mathbb{R}^3$ which int...
While Hartree–Fock theory is well established as a fundamental approximation for interacting fermion...
While Hartree–Fock theory is well established as a fundamental approximation for interacting fermion...
AbstractThe time-dependent Hartree–Fock equations are derived from the N-body linear Schrödinger equ...
Recently the leading order of the correlation energy of a Fermi gas in a coupled mean-field and semi...
We study the many body Schrödinger evolution of weakly coupled fermions interacting through a Coulom...
A simplified version of the Wigner--transformed time--dependent Hartree--Fock--Bogoliubov equations,...
In this paper we study the dynamics of fermionic mixed states in the mean-field regime. We consider ...
We present microscopic derivations of the defocusing two-dimensional cubic nonlinear Schrödinger equ...
We extend the derivation of the time-dependent Hartree-Fock equation recently obtained by Benedikter...
AbstractThis paper deals with the numerical solution of the time-dependent Schrödinger–Poisson syste...
The derivation of effective evolution equations is central to the study of non-stationary quantum ma...
International audienceNeutron scattering measurements at the Institut Laue-Langevin off quasi-twodim...