CAS Key Laboratory of Quantum Information, University of Science and Technology of China, Hefei 230026, People's Republic of China.
Synergetic Innovation Center of Quantum Information and Quantum Physics, University of Science and Technology of China, Hefei 230026, People's Republic of China.
Phys Rev Lett. 2019 Mar 15;122(10):100405. doi: 10.1103/PhysRevLett.122.100405.
We report the first implementation of the von Neumann instantaneous measurements of nonlocal variables, which becomes possible due to technological achievements in creating hyperentangled photons. Tests of reliability and of the nondemolition property of the measurements have been performed with high precision, showing the suitability of the scheme as a basic ingredient of numerous quantum information protocols. The method allows us to demonstrate for the first time with strong measurements a special feature of pre- and postselected quantum systems: the failure of the product rule. It has been verified experimentally that for a particular pre- and postselected pair of particles, a single measurement on particle A yields with certainty σ_{x}^{A}=-1, a single measurement on particle B yields with certainty σ_{y}^{B}=-1, and a single nonlocal measurement on particles A and B yields with certainty σ_{x}^{A}σ_{y}^{B}=-1.
我们报告了冯·诺依曼瞬时测量非局域变量的首次实现,这得益于在创建超纠缠光子方面的技术成就。通过高精度的测试,我们已经对测量的可靠性和非破坏性进行了测试,表明该方案适合作为许多量子信息协议的基本组成部分。该方法允许我们首次使用强测量来演示预选择和后选择量子系统的一个特殊特征:乘积规则的失效。实验验证了对于特定的预选择和后选择的粒子对,对粒子 A 的单次测量必然得到 σ_{x}^{A}=-1,对粒子 B 的单次测量必然得到 σ_{y}^{B}=-1,而对粒子 A 和 B 的单次非局域测量必然得到 σ_{x}^{A}σ_{y}^{B}=-1。