We develop a low-frequency perturbation theory in the extended Floquet Hilbert space of a periodically driven quantum systems, which puts the high- and low-frequency approximations to the Floquet theory on the same footing. It captures adiabatic perturbation theories recently discussed in the literature as well as diabatic deviation due to Floquet resonances. For illustration, we apply our Floquet perturbation theory to a driven two-level system as in the Schwinger–Rabi and the Landau-Zener–Stückelberg–Majorana models. We reproduce some known expressions for transition probabilities in a simple and systematic way and clarify and extend their regime of applicability. We then apply the theory to a periodically-driven system of fermions on the...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
We develop a low-frequency perturbation theory in the extended Floquet Hilbert space of a periodical...
Floquet theory provides rigorous foundations for the theory of periodically driven quantum systems. ...
Floquet theory provides rigorous foundations for the theory of periodically driven quantum systems. ...
We present theoretical methods for studying quantum mechanical systems subjected to fast periodic dr...
We study the approach to the adiabatic limit in periodically driven systems. Specifically focusing o...
We study the approach to the adiabatic limit in periodically driven systems. Specifically focusing o...
We study the approach to the adiabatic limit in periodically driven systems. Specifically focusing o...
We construct a systematic high-frequency expansion for periodically driven quantum systems based on ...
We construct a systematic high-frequency expansion for periodically driven quantum systems based on ...
We construct a systematic high-frequency expansion for periodically driven quantum systems based on ...
A driven quantum system was recently studied in the context of nonequilibrium phase transitions and ...
A driven quantum system has been recently studied in the context of nonequilibrium phase transitions...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
We develop a low-frequency perturbation theory in the extended Floquet Hilbert space of a periodical...
Floquet theory provides rigorous foundations for the theory of periodically driven quantum systems. ...
Floquet theory provides rigorous foundations for the theory of periodically driven quantum systems. ...
We present theoretical methods for studying quantum mechanical systems subjected to fast periodic dr...
We study the approach to the adiabatic limit in periodically driven systems. Specifically focusing o...
We study the approach to the adiabatic limit in periodically driven systems. Specifically focusing o...
We study the approach to the adiabatic limit in periodically driven systems. Specifically focusing o...
We construct a systematic high-frequency expansion for periodically driven quantum systems based on ...
We construct a systematic high-frequency expansion for periodically driven quantum systems based on ...
We construct a systematic high-frequency expansion for periodically driven quantum systems based on ...
A driven quantum system was recently studied in the context of nonequilibrium phase transitions and ...
A driven quantum system has been recently studied in the context of nonequilibrium phase transitions...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...