We investigate the sensitivity of the time evolution of semiclassical wave packets in two-dimensional chaotic billiards with respect to local perturbations of their boundaries. For this purpose, we address, analytically and numerically, the time decay of the Loschmidt echo (LE). We find the LE to decay exponentially in time, with the rate equal to the classical escape rate from an open billiard obtained from the original one by removing the perturbation-affected region of its boundary. Finally, we propose a principal scheme for the experimental observation of the LE decay
Decoherence causes entropy increase that can be quantified using, e.g., the purity [Formula presente...
We consider the quantum mechanical propagator for a particle moving in a $d$-dimensional Lorentz gas...
When a qubit or spin interacts with others under a many-body Hamiltonian, the information it contain...
We investigate the sensitivity of the time evolution of semiclassical wave packets in two-dimensiona...
We investigate the sensitivity of the time evolution of semiclassical wave packets in two-dimensiona...
We address the sensitivity of quantum mechanical time evolution by considering the time decay of the...
We address the sensitivity of quantum mechanical time evolution by considering the time decay of the...
We address the time decay of the Loschmidt echo, measuring the sensitivity of quantum dynamics to sm...
We study fidelity decay in classically chaotic microwave billiards for a local, piston-like boundary...
Loschmidt echo (LE) is a measure of reversibility and sensitivity to perturbations of quantum evolut...
We study the decay rate of the Loschmidt echo or fidelity in a chaotic system under a time-dependent...
TheorieThe notion of Loschmidt echo (also called "quantum fidelity") has been introduced in order to...
In this work microwave experiments are used to study the time dependent stability of quantum systems...
Quantum states extended over a large volume in phase space have oscillations from quantum interferen...
Tesis (Doctorado en Física)--Universidad Nacional de Córdoba, 2004.El eco de Loschmidt (LE) es una m...
Decoherence causes entropy increase that can be quantified using, e.g., the purity [Formula presente...
We consider the quantum mechanical propagator for a particle moving in a $d$-dimensional Lorentz gas...
When a qubit or spin interacts with others under a many-body Hamiltonian, the information it contain...
We investigate the sensitivity of the time evolution of semiclassical wave packets in two-dimensiona...
We investigate the sensitivity of the time evolution of semiclassical wave packets in two-dimensiona...
We address the sensitivity of quantum mechanical time evolution by considering the time decay of the...
We address the sensitivity of quantum mechanical time evolution by considering the time decay of the...
We address the time decay of the Loschmidt echo, measuring the sensitivity of quantum dynamics to sm...
We study fidelity decay in classically chaotic microwave billiards for a local, piston-like boundary...
Loschmidt echo (LE) is a measure of reversibility and sensitivity to perturbations of quantum evolut...
We study the decay rate of the Loschmidt echo or fidelity in a chaotic system under a time-dependent...
TheorieThe notion of Loschmidt echo (also called "quantum fidelity") has been introduced in order to...
In this work microwave experiments are used to study the time dependent stability of quantum systems...
Quantum states extended over a large volume in phase space have oscillations from quantum interferen...
Tesis (Doctorado en Física)--Universidad Nacional de Córdoba, 2004.El eco de Loschmidt (LE) es una m...
Decoherence causes entropy increase that can be quantified using, e.g., the purity [Formula presente...
We consider the quantum mechanical propagator for a particle moving in a $d$-dimensional Lorentz gas...
When a qubit or spin interacts with others under a many-body Hamiltonian, the information it contain...