P. Milman

Direct measurement of finite-time disentanglement induced by a reservoir

M. Franca Santos, P. Milman [2], L. Davidovich [1], N. Zagury [1]

Abstract

We propose a method for directly probing the dynamics of disentanglement of an initial two-qubit entangled state, under the action of a reservoir. We show that it is possible to detect disentanglement, for experimentally realizable examples of decaying systems, through the measurement of a single observable, which is invariant throughout the decay. The systems under consideration may lead to either finite-time or asymptotic disentanglement. A general prescription for measuring this observable, which yields an operational meaning to entanglement measures, is proposed, and exemplified for cavity quantum electrodynamics and trapped ions.

Decoherence, pointer engineering and quantum state protection

A. R. R. Carvalho, P. Milman [1], R. L. de Matos Filho [1], L. Davidovich [1]

Abstract

We present a proposal for protecting states against decoherence, based on the engineering of pointer states. We apply this procedure to the vibrational motion of a trapped ion, and show how to protect qubits, squeezed states, approximate phase eigenstates and superpositions of coherent states.

Manipulating motional states by selective vibronic interaction in two trapped ions

E. Solano [1,2], P. Milman [1], R. L. de Matos Filho [1], N. Zagury [1]

Abstract

We present a selective vibronic interaction for manipulating motional states in two trapped ions, acting resonantly on a previously chosen vibronic subspace and dispersively on all others. This is done respecting technical limitations on ionic laser individual addressing. We discuss the generation of Fock states and entanglement in the ionic collective motional degrees of freedom, among other applications.