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Quantum teleportation with imperfect quantum dots

机译:具有不完美量子点的量子传送

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Efficient all-photonic quantum teleportation requires fast and deterministic sources of highly indistinguishable and entangled photons. Solid-state-based quantum emittersnotably semiconductor quantum dotsare a promising candidate for the role. However, despite the remarkable progress in nanofabrication, proof-of-concept demonstrations of quantum teleportation have highlighted that imperfections of the emitter still place a major roadblock in the way of applications. Here, rather than focusing on source optimization strategies, we deal with imperfections and study different teleportation protocols with the goal of identifying the one with maximal teleportation fidelity. Using a quantum dot with sub-par values of entanglement and photon indistinguishability, we show that the average teleportation fidelity can be raised from below the classical limit to 0.842(14), adopting a polarization-selective Bell state measurement and moderate spectral filtering. Our results, which are backed by a theoretical model that quantitatively explains the experimental findings, loosen the very stringent requirements set on the ideal entangled-photon source and highlight that imperfect quantum dots can still have a say in teleportation-based quantum communication architectures.
机译:高效的全光子量子传送需要快速和确定性源于高度无法区分和缠绕的光子。固态的量子辐射发射地区半导体量子Quoteum Dotsare是一个有希望的角色候选者。然而,尽管在纳米制造中取得了显着进展,但量子传送的概念验证示范突出显示,发射器的缺陷仍然妨碍妨碍了应用的方式。在这里,不是专注于源优化策略,我们处理不完美的并研究不同的传送协议,以确定具有最大传送保真度的目标。使用Qual-Par的纠缠和光子脱节性的量子点,我们表明平均传送保真度可以从低于经典极限到0.842(14),采用偏振选择性钟状态测量和中等光谱滤波。我们的结果是通过定量解释实验结果的理论模型的结果,松开了在理想的纠缠 - 光子源上设置的非常严格的要求,并且突出显示不完美的量子点仍然可以在远程传送的量子通信架构中发表列。

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