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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Robust teleportation and multipartite entanglement analyzers via quantum-dot spins in weak-coupling cavity quantum electrodynamics regime
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Robust teleportation and multipartite entanglement analyzers via quantum-dot spins in weak-coupling cavity quantum electrodynamics regime

机译:弱耦合腔量子电动力学机制中通过量子点自旋的稳健隐形传态和多粒子纠缠分析仪

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摘要

We propose a special conditional phase gate (CPG) ○U (π/2) between the photon and the electron spin confined in a quantum dot (QD) embedded in a microcavity operating in the weak-coupling regime. This CPG ○U (pi;/2) provides an optical method to manipulate the QDs with photon parity. By using it, we present a scheme for implementing a state teleportation between two remote QD cavities and a scheme for constructing a photonic Bell-state analyzer. Furthermore, a multipartite Greenberger-Horne-Zeilinger state analyzer is also proposed. This multipartite entanglement analyzer can also be used as a multipartite entanglement generator. All these schemes are operated in the weak-coupling regime, so the high fidelities and efficiencies can be maintained even in the case of a bad cavity, and the schemes are accessible with current technologies.
机译:我们提出了一种特殊的条件相位门(CPG)○U(π/ 2),位于光子和电子自旋之间,电子自旋被限制在嵌入弱耦合机制的微腔中的量子点(QD)中。 CPG○U(pi; / 2)提供了一种光学方法,可通过光子奇偶校验来操纵QD。通过使用它,我们提出了一种在两个远程QD腔之间实现状态隐形传态的方案,以及一个构造光子钟形分析仪的方案。此外,还提出了多部分格林伯格-霍恩-泽林格状态分析仪。该多部分纠缠分析器也可以用作多部分纠缠生成器。所有这些方案都是在弱耦合状态下运行的,因此即使在空腔不好的情况下也可以保持高保真度和效率,并且该方案可以用当前技术访问。

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