The following article is Open access

Efficient generation of a maximally entangled state by repeated on- and off-resonant scattering of ancilla qubits

, , and

Published 21 December 2009 Published under licence by IOP Publishing Ltd
, , Citation Kazuya Yuasa et al 2009 New J. Phys. 11 123027DOI 10.1088/1367-2630/11/12/123027

1367-2630/11/12/123027

Abstract

A scheme for preparing two fixed noninteracting qubits in a maximally entangled state is presented. By repeating on- and off-resonant scattering of ancilla qubits, the target qubits are driven from an arbitrary initial state into a singlet state with probability 1 (perfect efficiency). Neither the preparation nor the post-selection of the ancilla spin state is required. The convergence from an arbitrary input state to the unique fixed point (mixing property) is proved rigorously, and its robustness is investigated by scrutinizing the effects of imperfections in the incident wave of the ancilla—such as mistuning to a resonant momentum, imperfect monochromatization, and fluctuation of the incident momentum—as well as detector efficiency.

Export citation and abstractBibTeXRIS

undefined