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基于测量的无噪声量子放大增强的连续变量量子隐形传态分析。

Analysis of continuous-variable quantum teleportation enhanced by measurement-based noiseless quantum amplification.

作者信息

Fiurášek Jaromír

出版信息

Opt Express. 2024 Jan 15;32(2):2527-2538. doi: 10.1364/OE.506757.

Abstract

Continuous-variable quantum teleportation enables deterministic teleportation of quantum states of optical modes. However, the state transfer is imperfect and limited by the amount of squeezing in the shared two-mode entangled state. Recently, it has been proposed and experimentally demonstrated that the performance of continuous-variable teleportation can be conditionally improved using a measurement-based noiseless quantum amplification [J. Zhao et al., Nat. Commun.14, 4745 (2023)10.1038/s41467-023-40438-z]. An inverse Gaussian filter with sufficiently high cut-off is applied to outcomes of the continuous-variable Bell measurement, which can increase the fidelity of state teleportation and the cost of making the protocol probabilistic. Here we provide a detailed theoretical analysis of this protocol and discuss its effects and limitations. We focus on teleportation of classes of Gaussian states with fixed covariance matrix and variable displacement. The measurement-based noiseless amplification conditionally improves the precision of estimation of the coherent displacement of the teleported state from the outcomes of continuous-variable Bell measurement. Therefore, more information about the teleported state is revealed and unity-gain teleportation becomes possible with a lower added thermal noise as compared to deterministic teleportation.

摘要

连续变量量子隐形传态能够实现光模量子态的确定性隐形传态。然而,态转移并不完美,且受限于共享的双模纠缠态中的压缩量。最近,有人提出并通过实验证明,利用基于测量的无噪声量子放大可以有条件地提高连续变量隐形传态的性能[J. 赵等人,《自然·通讯》14, 4745 (2023)10.1038/s41467 - 023 - 40438 - z]。将具有足够高截止频率的逆高斯滤波器应用于连续变量贝尔测量的结果,这可以提高态隐形传态的保真度,并使该协议具有概率性成本。在此,我们对该协议进行详细的理论分析,并讨论其效果和局限性。我们关注具有固定协方差矩阵和可变位移的高斯态类别的隐形传态。基于测量的无噪声放大根据连续变量贝尔测量的结果有条件地提高了对隐形传态态的相干位移的估计精度。因此,更多关于隐形传态态的信息被揭示出来,与确定性隐形传态相比,在添加更低的热噪声情况下实现单位增益隐形传态成为可能。

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