论文标题
带有波长转换和20公里分布的两光子梳子进行量子通信
Two-photon comb with wavelength conversion and 20-km distribution for quantum communication
论文作者
论文摘要
近年来,量子计算和量子通信已经大大发展,并有望为量子互联网技术做出贡献,包括云量子计算和无条件安全的通信。但是,长距离量子通信主要是由于光纤损失而挑战。对于基于纤维的传输来说,量子中继器是必不可少的,因为未知量子状态不能确定地放大。在这项研究中,我们证明了基于纤维的量子互联网的电信频带中的多功能纠缠来源,该量子互联网具有较窄的亚MHz范围的线宽,纠缠率超过95%,甚至具有频率多模板,纠缠率超过95%。此外,在纤维中总分布长度为20公里后,尽管波长转换器的带宽有限,但观察到具有易于识别归一化相关系数的两光子相关性。提出的实施承诺一种有效的纠缠分布方法,该方法与量子记忆和频率 - 磁性长距离量子通信应用相兼容。
Quantum computing and quantum communication, have been greatly developed in recent years and expected to contribute to quantum internet technologies, including cloud quantum computing and unconditionally secure communication. However, long-distance quantum communication is challenging mainly because of optical fiber losses; quantum repeaters are indispensable for fiber-based transmission because unknown quantum states cannot be amplified with certainty. In this study, we demonstrate a versatile entanglement source in the telecom band for fiber-based quantum internet, which has a narrow linewidth of sub-MHz range, entanglement fidelity of more than 95%, and Bell-state generation even with frequency multimode. Furthermore, after a total distribution length of 20-km in fiber, two-photon correlation is observed with an easily identifiable normalized correlation coefficient, despite the limited bandwidth of the wavelength converter. The presented implementation promises an efficient method for entanglement distribution that is compatible with quantum memory and frequency-multiplexed long-distance quantum communication applications.