most citedQuantum ratchets in dissipative chaotic systems

79 citations · 274 across the 7 of their papers we have counts for

collaborators

7 papers

cond-mat.stat-mech200572 cited

Fourier's Law in a Quantum Spin Chain and the Onset of Quantum Chaos

Carlos Mejia-Monasterio, Tomaz Prosen, Giulio Casati

We study heat transport in a nonequilibrium steady state of a quantum interacting spin chain. We provide clear numerical evidence of the validity of Fourier law. The regime of norm…

quant-ph200477 cited

Entanglement Across a Transition to Quantum Chaos

Carlos Mejia-Monasterio, Giuliano Benenti, Gabriel G. Carlo +1

We study the relation between entanglement and quantum chaos in one- and two-dimensional spin-1/2 lattice models, which exhibit mixing of the noninteracting eigenfunctions and tran…

nlin.CD20041 cited

Universal decay of classical Loschmidt echo of neutrally stable but mixing dynamics

Giulio Casati, Tomaz Prosen, Jinghua Lan +1

We provide analytical and numerical evidence that classical mixing systems which lack exponential sensitivity on initial conditions, exhibit universal decay of Loschmidt echo which…

cond-mat.stat-mech200479 cited

Quantum ratchets in dissipative chaotic systems

Gabriel G. Carlo, Giuliano Benenti, Giulio Casati +1

Using the method of quantum trajectories we study a quantum chaotic dissipative ratchet appearing for particles in a pulsed asymmetric potential in the presence of a dissipative en…

quant-ph200410 cited

Classical versus quantum errors in quantum computation of dynamical systems

Davide Rossini, Giuliano Benenti, Giulio Casati

We analyze the stability of a quantum algorithm simulating the quantum dynamics of a system with different regimes, ranging from global chaos to integrability. We compare, in these…

quant-ph200429 cited

Simulating noisy quantum protocols with quantum trajectories

Gabriel G. Carlo, Giuliano Benenti, Giulio Casati +1

The theory of quantum trajectories is applied to simulate the effects of quantum noise sources induced by the environment on quantum information protocols. We study two models that…