论文标题

通过弱测量和环境辅助测量,通过嘈杂的通道高保真量子传送

High-fidelity quantum teleportation through noisy channels via weak measurement and environment-assisted measurement

论文作者

Harraz, Sajede, Zhang, Jiao-Yang, Cong, Shuang

论文摘要

完美的传送协议需要纯最大共享的纠缠状态。尽管实际上,由于与嘈杂的环境的不可避免的互动,共同的纠缠被严重退化,这导致纠缠状态混合,并且极大地恶化了远程的性能。在这里,我们提出了一种传送协议,以通过振幅阻尼通道传送一个未知的量子,最多具有一个纠缠状态的单个副本。我们提出的传送协议虽然以铃铛和w纠缠状态为例进行了说明,但可以与任何类型的纠缠状态一起使用。在我们的协议中,我们在纠缠分布期间采用环境辅助测量,并通过在传送的最后一步中应用弱测量来进一步修改原始传送协议。我们通过改变弱测量的强度来发现传送保真度与成功概率之间的平衡。此外,我们研究了受控传送方案的保护,其中所有纠缠状态的所有量子都通过振幅阻尼通道。特别是,对于使用w状态的受控远程注视,可以通过使用EAM完全抑制共享纠缠的变形,因此不需要弱测量即可达到平均统一的统一忠诚度。数值仿真结果表明,我们提出的传送协议的表现优于基于弱测量的概率传送协议和没有保护的原始传送协议。

A perfect teleportation protocol requires pure maximally shared entangled states. While in reality the shared entanglement is severely degraded due to the inevitable interaction with the noisy environment, which leads to mixed entangled state and extremely deteriorates the performance of teleportation. Here, we propose a teleportation protocol to teleport an unknown qubit through the amplitude damping channels with a fidelity up to one with a single copy of the entangled state. Our proposed teleportation protocol, while illustrated using the Bell and W entangled states as examples, can be utilized with any type of entangled states. In our protocol we employ environment-assisted measurement during the entanglement distribution, and further modify the original teleportation protocol by applying weak measurement in the last step of teleportation. We find a balance between teleportation fidelity and success probability by varying the strength of the weak measurement. Furthermore, we investigate the protection of controlled teleportation protocols, where all the qubits of the entangled state pass through the amplitude damping channel. In particular, for the controlled teleportation with the W state, the decoherence of the shared entanglement can be totally suppressed by using EAM, hence no weak measurement is required to achieve an average teleportation fidelity of unity. The numerical simulation results reveal that our proposed teleportation protocol outperforms both the weak measurement based probabilistic teleportation protocol and the original teleportation protocol without protection.

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