Physics – Quantum Physics
Scientific paper
2004-09-20
Phys. Rev. A 72, 022345 (2005)
Physics
Quantum Physics
four pages two figures
Scientific paper
10.1103/PhysRevA.72.022345
We investigate quantum communication between the sites of a spin-ring with twisted boundary conditions. Such boundary conditions can be achieved by a flux through the ring. We find that a non-zero twist can improve communication through finite odd numbered rings and enable high fidelity multi-party quantum communication through spin rings (working near perfectly for rings of 5 and 7 spins). We show that in certain cases, the twist results in the complete blockage of quantum information flow to a certain site of the ring. This effect can be exploited to interface and entangle a flux qubit and a spin qubit without embedding the latter in a magnetic field.
Bose Sangita
Jin B.-Q.
Korepin Vladimir E.
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