D. Vitali

Decoherence and robustness of parity-dependent entanglement in the dynamics of a trapped ion

S. Maniscalco [1], A. Messina [1], A. Napoli [1], D. Vitali [2]

Abstract

We study the entanglement between the 2D vibrational motion and two ground state hyperfine levels of a trapped ion, Under particular conditions this entanglement depends on the parity of the total initial vibrational quanta. We study the robustness of this quantum coherence effect with respect to the presence of non-dissipative sources of decoherence, and of an imperfect initial state preparation.

Heating and decoherence suppression using decoupling techniques

D. Vitali [1], P. Tombesi [1]

Abstract

We study the application of decoupling techniques to the case of a damped vibrational mode of a chain of trapped ions, which can be used as a quantum bus in linear ion trap quantum computers. We show that vibrational heating could be efficiently suppressed using appropriate ``parity kicks''. We also show that vibrational decoherence can be suppressed by this decoupling procedure, even though this is generally more difficult because the rate at which the parity kicks have to applied increases with the effective bath temperature.

A model independent approach to non dissipative decoherence

R. Bonifacio, S. Olivares, P. Tombesi, D. Vitali

Abstract

We consider the case when decoherence is due to the fluctuations of some classical variable or parameter of a system and not to its entanglement with the environment. Under few and quite general assumptions, we derive a model-independent formalism for this non-dissipative decoherence, and we apply it to explain the decoherence observed in some recent experiments in cavity QED and on trapped ions.