We address the issue of fluctuations, about an exponential line shape, in a pair of one-dimensional kicked quantum systems exhibiting dynamical localization. An exact renormalization scheme establishes the fractal character of the fluctuations and provides a method to compute the localization length in terms of the fluctuations. In the case of a linear rotor, the fluctuations are independent of the kicking parameter k and exhibit self-similarity for certain values of the quasienergy. For given k, the asymptotic localization length is a good characteristic of the localized line shapes for all quasienergies. This is in stark contrast to the quadratic rotor, where the fluctuations depend upon the strength of the kicking and exhibit local “reso...
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked...
We investigate the quantum irreversibility and quantum diffusion in a non-Hermitian kicked rotor mod...
Periodically driven systems are nowadays a very powerful tool for the study of condensed quantum mat...
We address the issue of fluctuations, about an exponential line shape, in a pair of one-dimensional ...
A system of two periodically kicked coupled rotors is studied, to resolve an apparent contradiction ...
This work explores the origin of dynamical localization in one-dimensional systems using the kicked ...
We review our recent works on the dynamical localization in the quantum kicked rotator (QKR) and rel...
We review our recent works on the dynamical localization in the quantum kicked rotator (QKR) and rel...
We study the quantum kicked rotator in the classically fully chaotic regime K=10 and for various val...
We study the quantum kicked rotator in the classically fully chaotic regime K=10 and for various val...
We study the quantum kicked rotator in the classically fully chaotic regime K=10 and for various val...
We investigate the long-time limit of quantum localization of the kicked Rydberg atom. The kicked Ry...
Control over the quantum dynamics of chaotic kicked rotor systems is demonstrated. Specifically, con...
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked...
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked...
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked...
We investigate the quantum irreversibility and quantum diffusion in a non-Hermitian kicked rotor mod...
Periodically driven systems are nowadays a very powerful tool for the study of condensed quantum mat...
We address the issue of fluctuations, about an exponential line shape, in a pair of one-dimensional ...
A system of two periodically kicked coupled rotors is studied, to resolve an apparent contradiction ...
This work explores the origin of dynamical localization in one-dimensional systems using the kicked ...
We review our recent works on the dynamical localization in the quantum kicked rotator (QKR) and rel...
We review our recent works on the dynamical localization in the quantum kicked rotator (QKR) and rel...
We study the quantum kicked rotator in the classically fully chaotic regime K=10 and for various val...
We study the quantum kicked rotator in the classically fully chaotic regime K=10 and for various val...
We study the quantum kicked rotator in the classically fully chaotic regime K=10 and for various val...
We investigate the long-time limit of quantum localization of the kicked Rydberg atom. The kicked Ry...
Control over the quantum dynamics of chaotic kicked rotor systems is demonstrated. Specifically, con...
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked...
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked...
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked...
We investigate the quantum irreversibility and quantum diffusion in a non-Hermitian kicked rotor mod...
Periodically driven systems are nowadays a very powerful tool for the study of condensed quantum mat...