International audienceWe study the dynamics of a quantum spin ensemble controlled by trains of ultrashort pulses. To model disturbances of the kicks, we consider that the spins are submitted to different kick trains which follow regular, random, stochastic, or chaotic dynamical processes. These are described by dynamical systems on a torus. We study the quantum decoherence and the population relaxation of the spin ensemble induced by these classical dynamical processes disturbing the kick trains. For chaotic kick trains we show that the decoherence and the relaxation processes exhibit a signature of chaos directly related to the Lyapunov exponents of the dynamical system. This signature is a horizon of coherence, i.e., a preliminary duratio...
The work described m this thesis is based on a detailed analysis of the classical and quantum non li...
We investigate decoherence in the quantum kicked rotator (modeling cold atoms in a pulsed optical fi...
Quantum chaos imposes universal spectral signatures that govern the thermofield dynamics of a many-b...
International audienceWe study the dynamics of a quantum spin ensemble controlled by trains of ultra...
We analyze the interplay of chaos, entanglement, and decoherence in a system of qubits whose collect...
We investigate the quantum dynamics of a periodically kicked nonlinear spin system which exhibits re...
International audienceWe study spin chains submitted to disturbed kick trains described by classical...
We study a method to simulate quantum many-body dynamics of spin ensembles using measurement-based f...
The Kicked Rotor is a well studied example of a classical Hamiltonian chaotic system, where the mome...
In this work the decoherence formalism of quantum mechanics is explored and applied to a number of i...
Kicked rotor is a paradigmatic model for classical and quantum chaos in time-dependent Hamiltonian s...
This thesis investigates quantum transport in the energy space of two paradigm systems of quantum ch...
We study the dynamics of the entanglement between two qubits coupled to a common chaotic environment...
In der vorliegenden Arbeit wird die Quantenchaos-Thematik am Beispiel des gekickten harmonischen Osz...
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked...
The work described m this thesis is based on a detailed analysis of the classical and quantum non li...
We investigate decoherence in the quantum kicked rotator (modeling cold atoms in a pulsed optical fi...
Quantum chaos imposes universal spectral signatures that govern the thermofield dynamics of a many-b...
International audienceWe study the dynamics of a quantum spin ensemble controlled by trains of ultra...
We analyze the interplay of chaos, entanglement, and decoherence in a system of qubits whose collect...
We investigate the quantum dynamics of a periodically kicked nonlinear spin system which exhibits re...
International audienceWe study spin chains submitted to disturbed kick trains described by classical...
We study a method to simulate quantum many-body dynamics of spin ensembles using measurement-based f...
The Kicked Rotor is a well studied example of a classical Hamiltonian chaotic system, where the mome...
In this work the decoherence formalism of quantum mechanics is explored and applied to a number of i...
Kicked rotor is a paradigmatic model for classical and quantum chaos in time-dependent Hamiltonian s...
This thesis investigates quantum transport in the energy space of two paradigm systems of quantum ch...
We study the dynamics of the entanglement between two qubits coupled to a common chaotic environment...
In der vorliegenden Arbeit wird die Quantenchaos-Thematik am Beispiel des gekickten harmonischen Osz...
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked...
The work described m this thesis is based on a detailed analysis of the classical and quantum non li...
We investigate decoherence in the quantum kicked rotator (modeling cold atoms in a pulsed optical fi...
Quantum chaos imposes universal spectral signatures that govern the thermofield dynamics of a many-b...