INRIM, I-10135, Torino, Italy.
Phys Rev Lett. 2010 Mar 12;104(10):100501. doi: 10.1103/PhysRevLett.104.100501. Epub 2010 Mar 8.
Entanglement is the central resource of quantum information processing and the precise characterization of entangled states is a crucial issue for the development of quantum technologies. This leads to the necessity of a precise, experimental feasible measure of entanglement. Nevertheless, such measurements are limited both from experimental uncertainties and intrinsic quantum bounds. Here we present an experiment where the amount of entanglement of a family of two-qubit mixed photon states is estimated with the ultimate precision allowed by quantum mechanics.
纠缠是量子信息处理的核心资源,对纠缠态的精确刻画是量子技术发展的关键问题。这就需要一种精确的、实验可行的纠缠度量。然而,这种测量受到实验不确定性和内在量子限制的限制。在这里,我们展示了一个实验,其中通过量子力学允许的极限精度来估计一族两光子混合态的纠缠量。