We propose a unified approach for different exponential perturbation techniques used in the treatment of time-dependent quantum mechanical problems, namely the Magnus expansion, the Floquet–Magnus expansion for periodic systems, the quantum averaging technique, and the Lie–Deprit perturbative algorithms. Even the standard perturbation theory fits in this framework. The approach is based on carrying out an appropriate change of coordinates (or picture) in each case, and it can be formulated for any time-dependent linear system of ordinary differential equations. All of the procedures (except the standard perturbation theory) lead to approximate solutions preserving by construction unitarity when applied to the time-dependent Schröding...
In this paper, we are concerned with a formulation of Magnus and Floquet-Magnus expansions for gener...
In this paper, we are concerned with a formulation of Magnus and Floquet-Magnus expansions for gener...
The Magnus expansion is a frequently used tool to get approximate analytic solutions of time-depende...
Time-dependent perturbation theory as a tool to compute approximate solutions of the Schrödinger equ...
The Magnus expansion is a frequently used tool to get approximate analytic solutions of time-depende...
The time-dependent quantum perturbation theory developed by Born, Heisenberg and Jordan in 1926 is r...
Approximate resolution of linear systems of differential equations with varying coefficients is a re...
Approximate resolution of linear systems of differential equations with varying coefficients is a re...
Approximate resolution of linear systems of differential equations with varying coefficients is a re...
We formulate a unitary perturbation theory for quantum mechanics inspired by the LieDeprit formulati...
Abstract. In this paper we discuss the extention to exponential split-ting methods with respect to t...
We present a time-dependent perturbative approach adapted to the treatment of intense pulsed interac...
The computation of the Schrödinger equation featuring time-dependent potentials is of great importan...
The computation of the Schrödinger equation featuring time-dependent potentials is of great importan...
A time-dependent perturbative approach adapted to the treatment of intense pulsed interactions was p...
In this paper, we are concerned with a formulation of Magnus and Floquet-Magnus expansions for gener...
In this paper, we are concerned with a formulation of Magnus and Floquet-Magnus expansions for gener...
The Magnus expansion is a frequently used tool to get approximate analytic solutions of time-depende...
Time-dependent perturbation theory as a tool to compute approximate solutions of the Schrödinger equ...
The Magnus expansion is a frequently used tool to get approximate analytic solutions of time-depende...
The time-dependent quantum perturbation theory developed by Born, Heisenberg and Jordan in 1926 is r...
Approximate resolution of linear systems of differential equations with varying coefficients is a re...
Approximate resolution of linear systems of differential equations with varying coefficients is a re...
Approximate resolution of linear systems of differential equations with varying coefficients is a re...
We formulate a unitary perturbation theory for quantum mechanics inspired by the LieDeprit formulati...
Abstract. In this paper we discuss the extention to exponential split-ting methods with respect to t...
We present a time-dependent perturbative approach adapted to the treatment of intense pulsed interac...
The computation of the Schrödinger equation featuring time-dependent potentials is of great importan...
The computation of the Schrödinger equation featuring time-dependent potentials is of great importan...
A time-dependent perturbative approach adapted to the treatment of intense pulsed interactions was p...
In this paper, we are concerned with a formulation of Magnus and Floquet-Magnus expansions for gener...
In this paper, we are concerned with a formulation of Magnus and Floquet-Magnus expansions for gener...
The Magnus expansion is a frequently used tool to get approximate analytic solutions of time-depende...