peer reviewedThe mean-field limit of a bosonic quantum many-body system is described by (mostly) nonlinear equations of motion which may exhibit chaos very much in the spirit of classical particle chaos, i.e., by an exponential separation of trajectories in Hilbert space with a rate given by a positive Lyapunov exponent λ. The question now is whether λ imprints itself onto measurable observables of the underlying quantum many-body system even at finite particle numbers. Using a Bose-Einstein condensate expanding in a shallow potential landscape as a paradigmatic example for a bosonic quantum many-body system, we show that the system loses its coherence at an exponentially fast rate. Furthermore, we show that the rate is given by the Lyapuno...
Making use of appropriate quantum-classical correspondence we have examined the differential behavio...
A many body quantum system undergoing multiple resonant tunneling in a double barrier heterostructur...
Relaxation of quantum systems is a central problem in nonequilibrium physics. In contrast to classic...
We study the ultimate limits to the decoherence rate associated with dephasing processes. Fluctuatin...
Out-of-time-order correlators (OTOCs) have been proposed as sensitive probes for chaos in interactin...
Experiments with ultracold atoms periodically kicked in a phase-modulated lattice have clearly shown...
We propose an experimentally realizable method to demonstrate Lyapunov instability and to estimate e...
In this work, we show, that relative oscillations in asymptotic times of microcanonical Out-of-Time-...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
We review the properties of chaoticity and coherence in Bose-Einstein condensation and correlations,...
Accessing the connection between classical chaos and quantum many-body systems has been a long-stand...
Quantum chaos is usually characterized through its statistical implications on the energy spectrum o...
Accessing the connection between classical chaos and quantum many-body systems has been a long-stand...
We investigate both the classical and quantum dynamics of a spin-1 Bose–Einstein condensate (BEC) sy...
We investigate the effects of phase noise and particle loss on the dynamics of a Bose-Einstein conde...
Making use of appropriate quantum-classical correspondence we have examined the differential behavio...
A many body quantum system undergoing multiple resonant tunneling in a double barrier heterostructur...
Relaxation of quantum systems is a central problem in nonequilibrium physics. In contrast to classic...
We study the ultimate limits to the decoherence rate associated with dephasing processes. Fluctuatin...
Out-of-time-order correlators (OTOCs) have been proposed as sensitive probes for chaos in interactin...
Experiments with ultracold atoms periodically kicked in a phase-modulated lattice have clearly shown...
We propose an experimentally realizable method to demonstrate Lyapunov instability and to estimate e...
In this work, we show, that relative oscillations in asymptotic times of microcanonical Out-of-Time-...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
We review the properties of chaoticity and coherence in Bose-Einstein condensation and correlations,...
Accessing the connection between classical chaos and quantum many-body systems has been a long-stand...
Quantum chaos is usually characterized through its statistical implications on the energy spectrum o...
Accessing the connection between classical chaos and quantum many-body systems has been a long-stand...
We investigate both the classical and quantum dynamics of a spin-1 Bose–Einstein condensate (BEC) sy...
We investigate the effects of phase noise and particle loss on the dynamics of a Bose-Einstein conde...
Making use of appropriate quantum-classical correspondence we have examined the differential behavio...
A many body quantum system undergoing multiple resonant tunneling in a double barrier heterostructur...
Relaxation of quantum systems is a central problem in nonequilibrium physics. In contrast to classic...