Reichle R, Leibfried D, Knill E, Britton J, Blakestad R B, Jost J D, Langer C, Ozeri R, Seidelin S, Wineland D J
National Institute of Standards and Technology, Boulder, Colorado 80305, USA.
Nature. 2006 Oct 19;443(7113):838-41. doi: 10.1038/nature05146.
Entanglement is a necessary resource for quantum applications--entanglement established between quantum systems at different locations enables private communication and quantum teleportation, and facilitates quantum information processing. Distributed entanglement is established by preparing an entangled pair of quantum particles in one location, and transporting one member of the pair to another location. However, decoherence during transport reduces the quality (fidelity) of the entanglement. A protocol to achieve entanglement 'purification' has been proposed to improve the fidelity after transport. This protocol uses separate quantum operations at each location and classical communication to distil high-fidelity entangled pairs from lower-fidelity pairs. Proof-of-principle experiments distilling entangled photon pairs have been carried out. However, these experiments obtained distilled pairs with a low probability of success and required destruction of the entangled pairs, rendering them unavailable for further processing. Here we report efficient and non-destructive entanglement purification with atomic quantum bits. Two noisy entangled pairs were created and distilled into one higher-fidelity pair available for further use. Success probabilities were above 35 per cent. The many applications of entanglement purification make it one of the most important techniques in quantum information processing.
纠缠是量子应用的必要资源——在不同位置的量子系统之间建立的纠缠能够实现私密通信和量子隐形传态,并促进量子信息处理。分布式纠缠是通过在一个位置制备一对纠缠的量子粒子,并将该对中的一个成员传输到另一个位置来建立的。然而,传输过程中的退相干会降低纠缠的质量(保真度)。为了提高传输后的保真度,人们提出了一种实现纠缠“纯化”的协议。该协议在每个位置使用单独的量子操作和经典通信,从低保真度的对中提取出高保真度的纠缠对。已经进行了提取纠缠光子对的原理验证实验。然而,这些实验成功提取出对的概率很低,并且需要破坏纠缠对,从而使其无法用于进一步处理。在此,我们报告了利用原子量子比特进行高效且无损的纠缠纯化。创建了两个有噪声的纠缠对,并将其提纯为一个可供进一步使用的更高保真度的对。成功概率超过35%。纠缠纯化的众多应用使其成为量子信息处理中最重要的技术之一。