In the large-N, classical limit, the Bose-Hubbard dimer undergoes a transition to chaos when its tunneling rate is modulated in time. We use exact and approximate numerical simulations to determine the features of the dynamically evolving state that are correlated with the presence of chaos in the classical limit. We propose the statistical distance between initially similar number distributions as a reliable measure to distinguish regular from chaotic behavior in the quantum dynamics. Besides being experimentally accessible, number distributions can be efficiently reconstructed numerically from binned phase-space trajectories in a truncated Wigner approximation. Although the evolving Wigner function becomes very irregular in the chaotic re...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).The semiclassical and quantu...
Accessing the connection between classical chaos and quantum many-body systems has been a long-stand...
We review the fundamental concepts of quantum chaos in Hamiltonian systems. The quantum evolution of...
Several quantum phenomena have been experimentally investigated using the system of ultra-cold atoms...
The study of dynamical quantum systems, which are classically chaotic, and the search for quantum ma...
A perturbative model is studied for the tunneling of many-particle states from the ground band to th...
SUMMARY A perturbative model is studied for the tunneling of many-particle states from the ground ba...
A perturbative model is studied for the tunneling of many-particle states from the ground band to th...
The quantum delta-kicked rotor has been one of the workhorses in the experimental investigation of q...
peer reviewedAlthough highly successful, the truncated Wigner approximation (TWA) does not account f...
Chaos sets a fundamental limit to quantum-information processing schemes. We study the onset of chao...
A perturbative model is studied for the tunneling of many-particle states from the ground band to th...
In this thesis, we consider complex dynamical evolutions which could be realized experimentally with...
We study a model for ultracold, spinless atoms in quasi-one-dimensional optical lattices and subject...
peer reviewedThe mean-field limit of a bosonic quantum many-body system is described by (mostly) non...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).The semiclassical and quantu...
Accessing the connection between classical chaos and quantum many-body systems has been a long-stand...
We review the fundamental concepts of quantum chaos in Hamiltonian systems. The quantum evolution of...
Several quantum phenomena have been experimentally investigated using the system of ultra-cold atoms...
The study of dynamical quantum systems, which are classically chaotic, and the search for quantum ma...
A perturbative model is studied for the tunneling of many-particle states from the ground band to th...
SUMMARY A perturbative model is studied for the tunneling of many-particle states from the ground ba...
A perturbative model is studied for the tunneling of many-particle states from the ground band to th...
The quantum delta-kicked rotor has been one of the workhorses in the experimental investigation of q...
peer reviewedAlthough highly successful, the truncated Wigner approximation (TWA) does not account f...
Chaos sets a fundamental limit to quantum-information processing schemes. We study the onset of chao...
A perturbative model is studied for the tunneling of many-particle states from the ground band to th...
In this thesis, we consider complex dynamical evolutions which could be realized experimentally with...
We study a model for ultracold, spinless atoms in quasi-one-dimensional optical lattices and subject...
peer reviewedThe mean-field limit of a bosonic quantum many-body system is described by (mostly) non...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).The semiclassical and quantu...
Accessing the connection between classical chaos and quantum many-body systems has been a long-stand...
We review the fundamental concepts of quantum chaos in Hamiltonian systems. The quantum evolution of...