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通过叉形极化非线性光子晶体实现的轨道角动量纠缠

Orbital angular momentum entanglement via fork-poling nonlinear photonic crystals.

作者信息

Lu L L, Xu P, Zhong M L, Bai Y F, Zhu S N

出版信息

Opt Express. 2015 Jan 26;23(2):1203-12. doi: 10.1364/OE.23.001203.

Abstract

We report a compact scheme for the generation and manipulation of photon pairs entangled in the orbital angular momentum (OAM) from the fork-poling quadratic nonlinear crystal. The χ-modulation in this crystal is designed for fulfilling a tilted quasi-phase-matching geometry to ensure the efficient generation of entangled photons as well as for transferring of topological charge of the crystal to the photon pairs. Numerical results show that the OAM of photon pair is anti-correlated and the degree of OAM entanglement can be enhanced by modulating the topological charge of crystal, which indicates a feasible extension to high-dimensional OAM entanglement. These studies suggest that the fork-poling nonlinear photonic crystal a unique platform for compact generation and manipulation of high-dimensional and high-order OAM entanglement, which may have potential applications in quantum communication, quantum cryptography and quantum remote sensing.

摘要

我们报道了一种用于从叉形极化二次非线性晶体中产生和操纵轨道角动量(OAM)纠缠光子对的紧凑方案。该晶体中的χ调制旨在实现倾斜的准相位匹配几何结构,以确保高效产生纠缠光子,并将晶体的拓扑电荷转移到光子对。数值结果表明,光子对的OAM是反相关的,并且通过调制晶体的拓扑电荷可以增强OAM纠缠度,这表明向高维OAM纠缠的可行扩展。这些研究表明,叉形极化非线性光子晶体是用于紧凑地产生和操纵高维和高阶OAM纠缠的独特平台,这可能在量子通信、量子密码学和量子遥感中具有潜在应用。

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