Recently the leading order of the correlation energy of a Fermi gas in a coupled mean-field and semiclassical scaling regime has been derived, under the assumption of an interaction potential with a small norm and with compact support in Fourier space. We generalize this result to large interaction potentials, requiring only |⋅|V^∈ℓ1(Z3). Our proof is based on approximate, collective bosonization in three dimensions. Significant improvements compared to recent work include stronger bounds on non-bosonizable terms and more efficient control on the bosonization of the kinetic energy
We consider a gas of N bosons with interactions in the mean-field scaling regime. We review the proo...
The 1D Fermi gas with repulsive short-range interactions provides an important model of strong corre...
We discuss recent results on the relation between the strongly interacting one-dimensional Bose gas ...
Recently the leading order of the correlation energy of a Fermi gas in a coupled mean-field and semi...
We derive rigorously the leading order of the correlation energy of a Fermi gas in a scaling regime ...
Recently the leading order of the correlation energy of a Fermi gas in a coupled mean-field and semi...
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...
Hartree–Fock theory has been justified as a mean-field approximation for fermionic systems. However,...
We present ground state calculations for low-density Fermi gases described by two model interactions...
We prove a rigorous upper bound on the correlation energy of interacting fermions in the mean-field ...
We study the normal state of a 3d homogeneous dipolar Fermi gas beyond the Hartree-Fock approximatio...
We study the ground state properties of interacting Fermi gases in the dilute regime, in three dimen...
Interacting Fermi systems in the strongly correlated regime play a fundamental role in many areas of...
We consider the quantum many-body evolution of a homogeneous Fermi gas in three dimensions in the co...
We consider a gas of N bosons with interactions in the mean-field scaling regime. We review the proo...
The 1D Fermi gas with repulsive short-range interactions provides an important model of strong corre...
We discuss recent results on the relation between the strongly interacting one-dimensional Bose gas ...
Recently the leading order of the correlation energy of a Fermi gas in a coupled mean-field and semi...
We derive rigorously the leading order of the correlation energy of a Fermi gas in a scaling regime ...
Recently the leading order of the correlation energy of a Fermi gas in a coupled mean-field and semi...
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...
Hartree–Fock theory has been justified as a mean-field approximation for fermionic systems. However,...
We present ground state calculations for low-density Fermi gases described by two model interactions...
We prove a rigorous upper bound on the correlation energy of interacting fermions in the mean-field ...
We study the normal state of a 3d homogeneous dipolar Fermi gas beyond the Hartree-Fock approximatio...
We study the ground state properties of interacting Fermi gases in the dilute regime, in three dimen...
Interacting Fermi systems in the strongly correlated regime play a fundamental role in many areas of...
We consider the quantum many-body evolution of a homogeneous Fermi gas in three dimensions in the co...
We consider a gas of N bosons with interactions in the mean-field scaling regime. We review the proo...
The 1D Fermi gas with repulsive short-range interactions provides an important model of strong corre...
We discuss recent results on the relation between the strongly interacting one-dimensional Bose gas ...