peer reviewedaudience: researcher, professional, studentWe present a perturbative result for the temporal evolution of the fidelity of the quantum kicked rotor, i.e. the overlap of the same initial state evolved with two slightly different kicking strengths, for kicking periods close to a principal quantum resonance. Based on a pendulum approximation, we describe the fidelity for rotational orbits in the pseudo-classical phase space of a corresponding classical map. Our results are compared to numerical simulations indicating the range of applicability of our analytical approximation
Kicked atoms under a constant Stark or gravity field are investigated for experimental setups with c...
In this work we apply the formalism developed in [Phys. Rev. A 77, 043628 (2008)] to diffe...
A system of two periodically kicked coupled rotors is studied, to resolve an apparent contradiction ...
We present a perturbative result for the temporal evolution of the fidelity of the quantum kicked ro...
The quantum delta-kicked rotor has been one of the workhorses in the experimental investigation of q...
Several quantum phenomena have been experimentally investigated using the system of ultra-cold atoms...
We study the resonances of the quantum kicked rotor subjected to an extended initial distr...
Using a semiclassical ansatz we analytically predict for the fidelity of delta-kicked rotors the occ...
In quantum resonance, the atom optics kicked rotor, if it underlies a series of kicks, performs a ra...
We show that the quantum fidelity is accessible to cold atom experiments for a large class of evolut...
Kicked atoms under a constant Stark or gravity field are investigated for experimental setups with c...
Kicked rotor is a paradigmatic model for classical and quantum chaos in time-dependent Hamiltonian s...
We study the resonances of the quantum kicked rotor subjected to an excitation that follows an aperi...
Abstract. Time-dependent harmonic perturbation in dynamical systems is frequently approximated by a ...
We review the concept and applications of a semiclassical (epsilon-classical or pseudoclassical) app...
Kicked atoms under a constant Stark or gravity field are investigated for experimental setups with c...
In this work we apply the formalism developed in [Phys. Rev. A 77, 043628 (2008)] to diffe...
A system of two periodically kicked coupled rotors is studied, to resolve an apparent contradiction ...
We present a perturbative result for the temporal evolution of the fidelity of the quantum kicked ro...
The quantum delta-kicked rotor has been one of the workhorses in the experimental investigation of q...
Several quantum phenomena have been experimentally investigated using the system of ultra-cold atoms...
We study the resonances of the quantum kicked rotor subjected to an extended initial distr...
Using a semiclassical ansatz we analytically predict for the fidelity of delta-kicked rotors the occ...
In quantum resonance, the atom optics kicked rotor, if it underlies a series of kicks, performs a ra...
We show that the quantum fidelity is accessible to cold atom experiments for a large class of evolut...
Kicked atoms under a constant Stark or gravity field are investigated for experimental setups with c...
Kicked rotor is a paradigmatic model for classical and quantum chaos in time-dependent Hamiltonian s...
We study the resonances of the quantum kicked rotor subjected to an excitation that follows an aperi...
Abstract. Time-dependent harmonic perturbation in dynamical systems is frequently approximated by a ...
We review the concept and applications of a semiclassical (epsilon-classical or pseudoclassical) app...
Kicked atoms under a constant Stark or gravity field are investigated for experimental setups with c...
In this work we apply the formalism developed in [Phys. Rev. A 77, 043628 (2008)] to diffe...
A system of two periodically kicked coupled rotors is studied, to resolve an apparent contradiction ...