论文标题

基于sagnac的量子相关的连贯解释

Coherence interpretation of the noninterfering Sagnac-based quantum correlation

论文作者

Ham, Byoung S.

论文摘要

贝尔不平等违规是用于量子纠缠的定量测量工具。量子纠缠是量子信息科学的核心,其中所产生的远距离分离光子之间的非局部相关性显示了量子力学的独特特性。在这里,使用纠缠光子对的简单极化基本选择性非交流系统中的非局部相关性在简单的极性基本选择性非接口系统中的非局部相关性进行了连贯研究(Phys。Rev.A 73,012316(2006))。两种独立的局部极化器之间所得的非本地量子特征是连贯得出的,用于不可分割的强度产物的联合参数关系。因此,基于量子力学的波性质的最终相干解决方案被理解为通过巧合检测的测量修改的确定性过程。

Bell inequality violation is a quantitative measurement tool for quantum entanglement. Quantum entanglement is the heart of quantum information science, in which the resulting nonlocal correlation between remotely separated photons shows a unique property of quantum mechanics. Here, the role of coincidence detection is coherently investigated for the nonlocal correlation in a simple polarization-basis selective non-interferometric system using entangled photon pairs (Phys. Rev. A 73, 012316 (2006)). The resulting nonlocal quantum feature between two independent local polarizers is coherently derived for the joint-parameter relation of the inseparable intensity product. The resulting coherence solution based on the wave nature of quantum mechanics is thus understood as a deterministic process via coincidence detection-caused measurement modification.

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