The Green's function method for implicitly evaluating the sums over intermediate states occurring in the study of multiphoton processes is revisited. Partieular emphasis is given to bound-bound transitions and to the numerical techniques used to implement the method. This is also extended to the important case in which the sum over intermediate states must be performed with respect to an incomplete set. The accuracy of the method is tested against very precise results on atomic hydrogen obtained by direct summation over intermediate states
Introduction. Generalized Green's functions. Equations of motion for the generalized single-particle...
A unique prescription is given for obtaining the Green function for N free particles which can have ...
Many-body Green functions are a very efficient formulation of the many-body problem. We review the a...
We present an ongoing development of an existing code for calculating groundstate, steady-state, an...
In the present thesis we have formulated the Dalgarno-Lewis procedure for two-and three-photon proce...
In atomic and many-particle physics, Green functions often occur as propagators to formally represen...
Well-known variational principles for second-order perturbation matrix elements are extended to high...
A comprehensive examination of the properties of the Schrodinger- and Dirac-Coulomb Green function a...
International audienceSeveral widely used methods for the calculation of band structures and photo e...
A new method to compute fully differential double photoionization cross sections of atoms has been d...
We approach the problem of calculating cross sections for double photoionization of two-electron ato...
Author Institution:The absolute intensities of four wave mixing under CARS conditions and the two ph...
We develop further a new method for employing a set of real basis functions to represent the Green f...
We present a brief pedagogical review of theoretical Green's function methods applicable to open qua...
We present a uniform method for approximating the functions that appear in the N-photon radial matri...
Introduction. Generalized Green's functions. Equations of motion for the generalized single-particle...
A unique prescription is given for obtaining the Green function for N free particles which can have ...
Many-body Green functions are a very efficient formulation of the many-body problem. We review the a...
We present an ongoing development of an existing code for calculating groundstate, steady-state, an...
In the present thesis we have formulated the Dalgarno-Lewis procedure for two-and three-photon proce...
In atomic and many-particle physics, Green functions often occur as propagators to formally represen...
Well-known variational principles for second-order perturbation matrix elements are extended to high...
A comprehensive examination of the properties of the Schrodinger- and Dirac-Coulomb Green function a...
International audienceSeveral widely used methods for the calculation of band structures and photo e...
A new method to compute fully differential double photoionization cross sections of atoms has been d...
We approach the problem of calculating cross sections for double photoionization of two-electron ato...
Author Institution:The absolute intensities of four wave mixing under CARS conditions and the two ph...
We develop further a new method for employing a set of real basis functions to represent the Green f...
We present a brief pedagogical review of theoretical Green's function methods applicable to open qua...
We present a uniform method for approximating the functions that appear in the N-photon radial matri...
Introduction. Generalized Green's functions. Equations of motion for the generalized single-particle...
A unique prescription is given for obtaining the Green function for N free particles which can have ...
Many-body Green functions are a very efficient formulation of the many-body problem. We review the a...