paper

Tri-partite non-maximally entangled mixed states as a resource for optimum controlled quantum teleportation fidelity

arXiv:1907.00608 · doi:10.1103/PhysRevA.100.052325

Abstract

Three-qubit mixed states are used as a channel for controlled quantum teleportation (CQT) of single-qubit states. The connection between different channel parameters to achieve maximum controlled teleportation fidelity is investigated. We show that for a given multipartite entanglement and mixedness, a class of non-maximally entangled mixed states (NMEMS) achieves optimum controlled quantum teleportation fidelity, interestingly a class of maximally entangled mixed states (MEMS) fails to do so. This demonstrates, for a given spectrum and mixedness, that MEMS are not sufficient to attain optimum controlled quantum teleportation fidelity, which is in contradiction with the traditional quantum teleportation of single qubits. In addition, we show that biseparable NMEMS, for a certain range of mixedness, are useful as a resource to attain high controlled quantum teleportation fidelity, which essentially lowers the requirements of quantum channels for CQT.

8 pages, 8 figures