论文标题
通过量子卫生效应产生极化纠缠
Generation of polarization entanglement via the quantum Zeno effect
论文作者
论文摘要
量子ZENO效应表明,对量子系统的持续观察可能会导致其进化发生重大变化。在这里,我们提出了一种通过量子ZENO效应在耦合波导中两个最初未进入的光子之间建立极化纠缠的方法。我们通过描述系统的基础施罗宾格方程的数值模拟来支持我们的分析研究。此外,我们将技术扩展到平面配置中的三个耦合波导,并确定生成三分之三的W型状态所需的参数制度。我们的发现为光子量子信息技术提供了强大的量子状态工程方法。
The quantum Zeno effect reveals that the continuous observation of a quantum system can result in significant alterations to its evolution. Here, we present a method for establishing polarization entanglement between two initially unentangled photons in coupled waveguides via the quantum Zeno effect. We support our analytical investigation with numerical simulations of the underlying Schrodinger equation describing the system. Further, we extend our technique to three coupled waveguides in a planar configuration and determine the parameter regime required to generate three-qubit W-states. Our findings offer a powerful quantum state engineering approach for photonic quantum information technologies.