In (1+1)-dimensional quantum field theory, integrability is typically defined as the existence of an infinite number of local charges of different Lorentz spin, which commute with the Hamiltonian. A well known consequence of integrability is that scattering of particles is elastic and factorizable. These properties are the basis for the bootstrap program, which leads to the exact computation of S-matrices and form factors. We consider periodically-driven field theories, whose stroboscopic time-evolution is described by a Floquet Hamiltonian. It was recently proposed by Gritsev and Polkovnikov that it is possible for some form of integrability to be preserved even in driven systems. If a driving protocol exists such that the Floquet Hamilton...
International audienceWhen random quantum spin chains are submitted to some periodic Floquet driving...
This PhD thesis explores the similarities between integrable spin chains and quantum field theories,...
The stroboscopic evolution of a time-periodically driven isolated quantum system can always be descr...
In (1+1)-dimensional quantum field theory, integrability is typically defined as the existence of an...
In (1+1)-dimensional quantum field theory, integrability is typically defined as the existence of a...
We discuss several classes of integrable Floquet systems, i.e. systems which do not exhibit chaotic ...
4An integrable model subjected to a periodic driving gives rise generally to a nonintegrable Floquet...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
We present theoretical methods for studying quantum mechanical systems subjected to fast periodic dr...
Floquet theory provides rigorous foundations for the theory of periodically driven quantum systems. ...
We study transitions between distinct phases of one-dimensional periodically driven (Floquet) system...
In this work, we study non-equilibrium dynamics in Floquet conformal field theories (CFTs) in 1+1D, ...
Floquet dynamical quantum phase transitions (FDQPTs) are signified by recurrent nonanalytic behavior...
Summarization: We provide an analytic solution to the problem of system-bath dynamics under the effe...
The main goal of the present thesis is to set up a functional renormalization group formalism in Flo...
International audienceWhen random quantum spin chains are submitted to some periodic Floquet driving...
This PhD thesis explores the similarities between integrable spin chains and quantum field theories,...
The stroboscopic evolution of a time-periodically driven isolated quantum system can always be descr...
In (1+1)-dimensional quantum field theory, integrability is typically defined as the existence of an...
In (1+1)-dimensional quantum field theory, integrability is typically defined as the existence of a...
We discuss several classes of integrable Floquet systems, i.e. systems which do not exhibit chaotic ...
4An integrable model subjected to a periodic driving gives rise generally to a nonintegrable Floquet...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
We present theoretical methods for studying quantum mechanical systems subjected to fast periodic dr...
Floquet theory provides rigorous foundations for the theory of periodically driven quantum systems. ...
We study transitions between distinct phases of one-dimensional periodically driven (Floquet) system...
In this work, we study non-equilibrium dynamics in Floquet conformal field theories (CFTs) in 1+1D, ...
Floquet dynamical quantum phase transitions (FDQPTs) are signified by recurrent nonanalytic behavior...
Summarization: We provide an analytic solution to the problem of system-bath dynamics under the effe...
The main goal of the present thesis is to set up a functional renormalization group formalism in Flo...
International audienceWhen random quantum spin chains are submitted to some periodic Floquet driving...
This PhD thesis explores the similarities between integrable spin chains and quantum field theories,...
The stroboscopic evolution of a time-periodically driven isolated quantum system can always be descr...