Pan Jian-Wei, Gasparoni Sara, Ursin Rupert, Weihs Gregor, Zeilinger Anton
Institut für Experimentalphysik, Universität Wien, Boltzmanngasse 5, 1090 Wien, Austria.
Nature. 2003 May 22;423(6938):417-22. doi: 10.1038/nature01623.
Distribution of entangled states between distant locations is essential for quantum communication over large distances. But owing to unavoidable decoherence in the quantum communication channel, the quality of entangled states generally decreases exponentially with the channel length. Entanglement purification--a way to extract a subset of states of high entanglement and high purity from a large set of less entangled states--is thus needed to overcome decoherence. Besides its important application in quantum communication, entanglement purification also plays a crucial role in error correction for quantum computation, because it can significantly increase the quality of logic operations between different qubits. Here we demonstrate entanglement purification for general mixed states of polarization-entangled photons using only linear optics. Typically, one photon pair of fidelity 92% could be obtained from two pairs, each of fidelity 75%. In our experiments, decoherence is overcome to the extent that the technique would achieve tolerable error rates for quantum repeaters in long-distance quantum communication. Our results also imply that the requirement of high-accuracy logic operations in fault-tolerant quantum computation can be considerably relaxed.
远距离量子通信中,纠缠态在遥远位置间的分布至关重要。但由于量子通信信道中不可避免的退相干,纠缠态的质量通常会随信道长度呈指数下降。因此,需要进行纠缠纯化,即从大量纠缠程度较低的态中提取出高纠缠度和高纯度的态子集,以克服退相干。除了在量子通信中的重要应用外,纠缠纯化在量子计算的纠错中也起着关键作用,因为它可以显著提高不同量子比特之间逻辑运算的质量。在此,我们仅使用线性光学演示了偏振纠缠光子一般混合态的纠缠纯化。通常,从两对保真度为75%的光子对中可获得一对保真度为92%的光子对。在我们的实验中,退相干被克服到这样的程度:该技术对于长距离量子通信中的量子中继器而言能实现可容忍的错误率。我们的结果还意味着,容错量子计算中对高精度逻辑运算的要求可以大幅放宽。