Schuck Carsten, Huber Gerhard, Kurtsiefer Christian, Weinfurter Harald
Department für Physik, Ludwig-Maximilians-Universität, München, Germany.
Phys Rev Lett. 2006 May 19;96(19):190501. doi: 10.1103/PhysRevLett.96.190501. Epub 2006 May 17.
We show how hyperentanglement allows us to deterministically distinguish between all four polarization Bell states of two photons. In this proof-of-principle experiment, we employ the intrinsic time-energy correlation of photon pairs generated with high temporal definition in addition to the polarization entanglement obtained from parametric down-conversion. For the identification, no nonlinear optical elements or auxiliary photons are needed. The new possibilities this complete Bell measurement offers are demonstrated by realizing an optimal dense coding protocol.
我们展示了超纠缠如何使我们能够确定性地区分两个光子的所有四种偏振贝尔态。在这个原理验证实验中,除了通过参量下转换获得的偏振纠缠之外,我们还利用了具有高时间分辨率产生的光子对的固有时间 - 能量相关性。对于识别而言,无需非线性光学元件或辅助光子。通过实现一个最优的密集编码协议,展示了这种完整贝尔测量所提供的新可能性。