论文标题

实验波长 - 多头纠缠基量子密码学

Experimental wavelength-multiplexed entanglement-based quantum cryptography

论文作者

Pseiner, Johannes, Achatz, Lukas, Bulla, Lukas, Bohmann, Martin, Ursin, Rupert

论文摘要

在最新的量子键分布(QKD)系统中,提高关键发电率的主要限制因素是检测光子的时机分辨率。在这里,我们介绍并实验展示了一种克服这一局限性的策略,以及用于高损失和长距离实施的策略。我们使用波长多路复用来利用纠缠光子的固有波长相关性,从而从极化纠缠中生成量子安全密钥。所提出的方法可以集成到基于纤维和卫星的量子通信方案中,而不会对大多数类型的纠缠来源进行任何更改。该技术具有巨大的缩放电位,与非多样化方案相比,该技术可以将安全密钥速率提高几个数量级。

In state-of-the-art quantum key distribution (QKD) systems, the main limiting factor in increasing the key generation rate is the timing resolution in detecting photons. Here, we present and experimentally demonstrate a strategy to overcome this limitation, also for high-loss and long-distance implementations. We exploit the intrinsic wavelength correlations of entangled photons using wavelength multiplexing to generate a quantum secure key from polarization entanglement. The presented approach can be integrated into both fiber- and satellite-based quantum-communication schemes, without any changes to most types of entanglement sources. This technique features a huge scaling potential allowing to increase the secure key rate by several orders of magnitude as compared to non-multiplexed schemes.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源