论文标题

反事实逻辑门

Counterfactual Logic Gates

论文作者

Li, Zheng-Hong, Ji, Xiao-Fei, Asiri, Saeed, Wang, Luojia, Al-Amri, M.

论文摘要

我们介绍了如何反事实实现包括NAND,NOR和XOR门在内的基本逻辑门。所提出的反事实逻辑门的两个输入(Bob和Charlie)和输出(爱丽丝)不在同一站点,而是在三个不同的位置分开。我们表明,不需要为大门预先安排纠缠,更重要的是,在信息处理过程中,爱丽丝,鲍勃和查理之间没有真正的物理颗粒。鲍勃(Bob)和查理(Charlie)只需要独立控制将它们连接到爱丽丝的传输通道的阻塞和解密即可。通过这种方式,他们可以在爱丽丝的末端完全确定真实光子的状态,从而导致实现反事实逻辑门。特定反事实逻辑门的功能仅由爱丽丝光学设备的适当设计确定。此外,通过利用所提出的反事实逻辑门,我们演示了如何反作用地用三个远程量子对象准备Greenberger-Horne-Zeilinger状态和W状态,这些对象处于阻塞和解除透射通道的叠加状态。

We present how basic logic gates including NAND, NOR and XOR gates can be implemented counterfactually. The two inputs (Bob and Charlie) and the output (Alice) of the proposed counterfactual logic gate are not within the same station but rather separated in three different locations. We show that there is no need to pre-arrange entanglement for the gate, and more importantly, there is no real physical particles traveling among Alice, Bob and Charlie during the information processing. Bob and Charlie only need to independently control the blocking and unblocking of the transmission channels that connect them to Alice. In this way, they can completely determine the state of a real photon at Alice's end, thereby leading to implement a counterfactual logic gate. The functionality of a particular counterfactual logic gate is determined only by an appropriate design of Alice's optical device. Furthermore, by utilizing the proposed counterfactual logic gates, we demonstrate how to counterfactually prepare the Greenberger-Horne-Zeilinger state and W state with three remote quantum objects, which are in superposition states of blocking and unblocking the transmission channel.

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