In these notes, the two-particle Hamiltonian for electron–hole interaction is derived. First, a simple Hartree–Fock based approach is used and an effective two-particle Schrödinger equation is obtained. Then, using Green's function techniques of many-body perturbation theory, correlation effects are introduced and the Bethe–Salpeter equation is deduced, where the electron–hole interaction is partially screened. Finally, some significant results in the literature are discussed
It is well known that the ambient environment can dramatically renormalize the quasiparticle gap and...
This paper is devoted to study many-body effects in the positron annihi-lation experiment, both elec...
An attempt is undertaken to formulate a particle-hole optical model for descrip-tion of giant-resona...
The optical properties of a variety of materials have been calculated using a recently developed ab...
When a material is irradiated by particles or light, it responds with the excitation of electrons an...
The connection between many-body perturbation theory (MBPT) and quantum electrodynamics (QED) is rev...
The role played by the electron interactions in determining the properties of solids has been invest...
We present a method for computing optical absorption spectra by means of a Bethe-Salpeter equation ...
13 pages, 3 figures, invited Perspective articleInternational audienceThe many-body Green's function...
In this paper we present a generalization of Salpeter's approach to solving the Bethe-Salpeter equat...
An accurate description of the electronic structure of semiconductors and insulators is essential in...
The method of Gell-Mann and Brueckner for treating electron interactions in a degenerate electron ga...
Abstract. We present experimental and theoretical evidence for the potential of the two-particle spe...
It is well known that the ambient environment can dramatically renormalize the quasiparticle gap and...
This paper is devoted to study many-body effects in the positron annihi-lation experiment, both elec...
An attempt is undertaken to formulate a particle-hole optical model for descrip-tion of giant-resona...
The optical properties of a variety of materials have been calculated using a recently developed ab...
When a material is irradiated by particles or light, it responds with the excitation of electrons an...
The connection between many-body perturbation theory (MBPT) and quantum electrodynamics (QED) is rev...
The role played by the electron interactions in determining the properties of solids has been invest...
We present a method for computing optical absorption spectra by means of a Bethe-Salpeter equation ...
13 pages, 3 figures, invited Perspective articleInternational audienceThe many-body Green's function...
In this paper we present a generalization of Salpeter's approach to solving the Bethe-Salpeter equat...
An accurate description of the electronic structure of semiconductors and insulators is essential in...
The method of Gell-Mann and Brueckner for treating electron interactions in a degenerate electron ga...
Abstract. We present experimental and theoretical evidence for the potential of the two-particle spe...
It is well known that the ambient environment can dramatically renormalize the quasiparticle gap and...
This paper is devoted to study many-body effects in the positron annihi-lation experiment, both elec...
An attempt is undertaken to formulate a particle-hole optical model for descrip-tion of giant-resona...