论文标题

使用多部分和奇数J-spin相干状态作为资源提高任意超级相干状态的概率量子传送效率

Improving the probabilistic quantum teleportation efficiency of arbitrary superposed coherent state using multipartite even and odd j-spin coherent states as resource

论文作者

Kirdi, Meryem El, Slaoui, Abdallah, Hadfi, Hanane El, Daoud, Mohammed

论文摘要

量子传送是量子信息安全传输的最重要技术之一。使用Preshared纠缠,量子传送被设计为许多量子信息任务中的基本钥匙,并且在量子技术中突出了功能,尤其是在量子通信中。在这项工作中,我们通过采用多部分和奇数$ j $ -spin连贯的状态为任意超塑的连贯状态提供新的概率传送方案,作为连接爱丽丝(发送者)和鲍勃(接收者)的纠缠资源。在这里,爱丽丝具有均匀的旋转连贯状态,并在两次旋转上进行了重复的GHz状态测量(GHzSM),包括($ 1 $)未知的旋转状态和($ 2 $)的两个相干旋转状态之一,或者取代使用Maximal平均速度。我们提供共享状态的纠缠量之间的关系,并通过同意量化,传送保真度和传送目标状态的成功概率,直到$ n^{\ rm th} $重复尝试。在此方案中,我们表明即使使用非最大程度的纠缠状态也可以完成完美的量子传送。此外,这种重复的GHzSM尝试过程显着增加了传送状态的平均保真度,以及成功运行概率方案的概率。同样,在我们的结果上,我们表明$ J $ -SPIN号,目标状态参数和相干状态之间的重叠提供了重要的附加控制参数,可以调整这些参数以最大程度地提高传送效率。

Quantum teleportation is one of the most important techniques for quantum information secure transmission. Using preshared entanglement, quantum teleportation is designed as a basic key in many quantum information tasks and features prominently in quantum technologies, especially in quantum communication. In this work, we provide a new probabilistic teleportation scheme for arbitrary superposed coherent states by employing the multipartite even and odd $j$-spin coherent states as the entangled resource connecting Alice (sender) and Bob (receiver). Here, Alice possesses both even and odd spin coherent states and makes repeated GHZ states measurements (GHZSMs) on the pair of spins, consisting of ($1$) the unknown spin state and ($2$) one of the two coherent spin states, taken alternately, until reaching a quantum teleportation with maximal average fidelity. We provide the relationship between the entanglement amount of the shared state, quantified by the concurrence, with the teleportation fidelity and the success probability of the teleported target state up to the $n^{\rm th}$ repeated attempt. In this scheme, we show that the perfect quantum teleportation can be done even with a non-maximally entangled state. Furthermore, this repeated GHZSMs attempt process significantly increases both the average fidelity of the teleported state and the probability of a successful run of the probabilistic protocol. Also on our results, we show that the $j$-spin number, the target state parameter and the overlap between coherent states provide important additional control parameters that can be adjusted to maximize the teleportation efficiency.

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