论文标题
连贯激发的弗朗森型非局部相关性
A coherently excited Franson-type nonlocal correlation
论文作者
论文摘要
纠缠是量子技术的基本构建基块,其性质具有非本地现实主义的独特量子特征。然而,这种非本地量子特性被称为一种怪异的现象,无法通过任何经典手段获得。最近,神秘的量子现象是使用纠缠光子对一致解释的,其中在配对光子的操纵产品基础上发现了量子神秘。在这里,弗朗森型非局部相关的连贯版本均由各种古典物理学表示。非局部相关的结果相干解满足了与量子版本相同的局部参数的相同的关节关系。对于非局部相关边缘,通过同步的声学调节器进行了减弱激光光的相干操纵,以生成随机但相匹配的光子对。
Entanglement is the basic building block of quantum technologies whose property is in the unique quantum feature of nonlocal realism. However, such a nonlocal quantum property is known as just a weird phenomenon that cannot be obtained by any classical means. Recently, the mysterious quantum phenomena have been coherently interpreted using entangled photon pairs, where the quantum mystery has been found in the manipulated product-basis superposition of paired photons. Here, a coherence version of the Franson-type nonlocal correlation is presented by all means of classical physics. The resulting coherence solutions of the nonlocal correlation satisfy the same joint-phase relation of local parameters as in the quantum version. For the nonlocal correlation fringe, coherent manipulations of attenuated laser light are conducted by synchronized acousto-optic modulators to generate random but phase-matched photon pairs.