In this paper we present a general theoretical framework to study interacting electrons under the influence of an external time-periodic driving, such as a homogeneous laser field. This is performed through a true many-body calculation and the use of Floquet theory. In particular, we consider a linear atomic chain using the Hubbard model to describe the short-ranged Coulomb interactions between electrons, plus Cluster Perturbation Theory to embed the many-body exact solution for a finite system into both an extended and an infinite lattice. Due to the presence of the external time-periodic perturbation, the electronic problem can be mapped into the study of photon-dressed quasiparticles thanks to Floquet theorem, keeping into account of all...
From quantum mechanical first principles only, we rigorously study the time-evolution of a N-level a...
We have studied the electron-impact excitation of an atom, in the presence of a laser field whose ph...
The present thesis is devoted to quantum simulation of strongly interacting systems of ultra-cold at...
In this paper we present a general theoretical framework to study interacting electrons under the in...
We propose a method to study the time evolution of correlated electrons driven by a harmonic perturb...
A model is investigated where a monochromatic, spatially homogeneous laser field interacts with an e...
The work presented in this thesis was financially supported by an Engineering and Physical Sciences ...
Abstract. We present some recent new developments of the generalized Floquet formulation of time-dep...
case of many-electron systems in multicolor or polychromatic time-dependent fields. It is shown that...
Time-periodic forcing in the form of coherent radiation is a standard tool for the coherent manipula...
We investigate the standard free-electron laser in the small signal, cold beam regime using a fully ...
This thesis deals with quantum Monte Carlo simulations of correlated low dimensional electron system...
Floquet engineering offers tantalizing opportunities for controlling the dynamics of quantum many-bo...
We study, in the framework of the high-frequency Floquet theory, the one-dimensional system consist...
External driving is emerging as a promising tool for exploring new phases in quantum systems. The in...
From quantum mechanical first principles only, we rigorously study the time-evolution of a N-level a...
We have studied the electron-impact excitation of an atom, in the presence of a laser field whose ph...
The present thesis is devoted to quantum simulation of strongly interacting systems of ultra-cold at...
In this paper we present a general theoretical framework to study interacting electrons under the in...
We propose a method to study the time evolution of correlated electrons driven by a harmonic perturb...
A model is investigated where a monochromatic, spatially homogeneous laser field interacts with an e...
The work presented in this thesis was financially supported by an Engineering and Physical Sciences ...
Abstract. We present some recent new developments of the generalized Floquet formulation of time-dep...
case of many-electron systems in multicolor or polychromatic time-dependent fields. It is shown that...
Time-periodic forcing in the form of coherent radiation is a standard tool for the coherent manipula...
We investigate the standard free-electron laser in the small signal, cold beam regime using a fully ...
This thesis deals with quantum Monte Carlo simulations of correlated low dimensional electron system...
Floquet engineering offers tantalizing opportunities for controlling the dynamics of quantum many-bo...
We study, in the framework of the high-frequency Floquet theory, the one-dimensional system consist...
External driving is emerging as a promising tool for exploring new phases in quantum systems. The in...
From quantum mechanical first principles only, we rigorously study the time-evolution of a N-level a...
We have studied the electron-impact excitation of an atom, in the presence of a laser field whose ph...
The present thesis is devoted to quantum simulation of strongly interacting systems of ultra-cold at...