论文标题

用电信C带量子点的GHz锁定量子量子置量矩阵的传送

GHz-clocked teleportation of time-bin qubits with a telecom C-band quantum dot

论文作者

Anderson, M., Müller, T., Huwer, J., Skiba-Szymanska, J., Krysa, A. B., Stevenson, R. M., Heffernan, J., Ritchie, D. A., Shields, A. J.

论文摘要

传送是量子力学的基本概念,在通过量子继电器节点扩展量子通信通道的范围内,具有重要的应用。要与现实世界中的技术兼容,例如光纤网络上的安全量子密钥分布,此类中继节点必须以GHz时钟速率运行,并接受1550 nm左右的低损坏电信频段中的时芯编码量子。在这里,我们表明,INAS/INP液滴外观量子点与1550 nm接近1550 nm的次福斯式量子点非常适合实现这项技术。为了在GHz时钟速率下创建必要的按需光子发射,我们开发了一种柔性的脉冲光激励方案,并证明快速驾驶条件与多光子发射速率兼容。我们进一步显示,即使在这些驾驶条件下,从Biexciton级联获得的光子对也显示出接近90 \%的纠缠忠诚度,与CW激发下获得的值相当。使用渐进式ZEHNDER干涉仪和我们的光子源,我们最终构建了一个能够接收和发送时型量子量子的量子量子继电器,并证明了平均寄托忠诚度为$ 0.82 \ pm0.01 $,超过了经典的限制,超过了近10个标准偏差。

Teleportation is a fundamental concept of quantum mechanics with an important application in extending the range of quantum communication channels via quantum relay nodes. To be compatible with real-world technology such as secure quantum key distribution over fibre networks, such a relay node must operate at GHz clock rates and accept time-bin encoded qubits in the low-loss telecom band around 1550 nm. Here, we show that InAs/InP droplet epitaxy quantum dots with their sub-Poissonian emission near 1550 nm are ideally suited for the realisation of this technology. To create the necessary on-demand photon emission at GHz clock rates, we develop a flexible pulsed optical excitation scheme, and demonstrate that the fast driving conditions are compatible with a low multiphoton emission rate. We show further that, even under these driving conditions, photon pairs obtained from the biexciton cascade show an entanglement fidelity close to 90\%, comparable to the value obtained under cw excitation. Using asymetric Mach Zehnder interferometers and our photon source, we finally construct a time-bin qubit quantum relay able to receive and send time-bin encoded photons, and demonstrate mean teleportation fidelities of $0.82\pm0.01$, exceeding the classical limit by nearly 10 standard deviations.

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