N. Zagury

Single observable concurrence measurement without simultaneous copies

A. Salles [1], F. de Melo [1], J. C. Retamal [2], R. L. de Matos Filho [1], N. Zagury [1]

Abstract

We present a protocol that allows us to obtain the concurrence of any two qubit pure state by performing a minimal and optimal tomography of one of the subsystems through measuring a single observable of an ancillary four dimensional qudit. An implementation for a system of trapped ions is also proposed, which can be achieved with present day experimental techniques.

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.

Squeezing generation and revivals in a cavity-ion system in contact with a reservoir

R. Rangel [1], L. Carvalho [1], N. Zagury [1]

Abstract

We consider a system consisting of a single two-level ion in a harmonic trap, which is localized inside a non-ideal optical cavity at zero temperature and subjected to the action of two external lasers. We are able to obtain an analytical solution for the total density operator of the system and show that squeezing in the motion of the ion and in the cavity field is generated. We also show that complete revivals of the states of the motion of the ion and of the cavity field occur periodically.

Entangled coherent states and squeezing in N trapped ions

E. Solano [1,3], R. L. de Matos Filho [2], N. Zagury [2]

Abstract

We consider a resonant bichromatic excitation of N trapped ions that generates displacement and squeezing in their collective motion conditioned to their ionic internal state, producing eventually Scrhodinger cat states and entangled squeezing. Furthermore, we study the case of tetrachromatic illumination or producing the so called entangled coherent states in two motional normal modes.

Mesoscopic superpositions of vibronic collective states of N trapped ions

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

Abstract

We propose a scalable procedure to generate entangled superpositions of motional coherent states and electronic states in N trapped ions. Beyond their fundamental importance, these states may be of interest for quantum information processing and may be used in experimental studies of decoherence.

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.

Reliable teleportation in trapped ions

E. Solano, C. L. Cesar [1], R. L. de Matos Filho [1], N. Zagury [1]

Abstract

We study a method for the implementation of a reliable teleportation protocol (theoretically, 100% of success) of internal states in trapped ions. The generation of the quantum channel (any of four Bell states) may be done respecting technical limitations on individual addressing and without claiming the Lamb-Dicke regime. An adequate Bell analyzer, that transforms unitarily the Bell basis into a completely disentangled one, is considered. Probable sources of error and fidelity estimations of the teleportation process are studied. Finally, we discuss experimental issues, proposing a scenario in which the present scheme could be implemented.

Deterministic Bell states and measurement of the motional state of two trapped ions

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

Abstract

We present a method for the deterministic generation of all the electronic Bell states of two trapped ions. It involves the combination of a purely dispersive with a resonant laser excitation of vibronic transitions of the ions. In contrast to other methods presented up to now, our proposal does not require differential laser addressing of the individual ions and may be easily implemented with present available techniques. It is further shown that this excitation scheme is highly adequate for the complete determination of the motional state of the ions.