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Resilience of orbital-angular-momentum photonic qubits and effects on hybrid entanglement

机译:轨道角动量光子量子位的弹性及其对混合纠缠的影响

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The orbital angular momentum of light (OAM) provides a promising approach for the implementation of multidimensional states (qudits) for quantum-information purposes. In order to characterize the degradation undergone by the information content of qubits encoded in a bidimensional subspace of the orbital angular momentum degree of freedom of photons, we study how the state fidelity is affected by a transverse obstruction placed along the propagation direction of the light beam. Emphasis is placed on the effects of planar and radial hard-edged aperture functions on the state fidelity of Laguerre-Gaussian transverse modes and the entanglement properties of polarization-OAM hybrid-entangled photon pairs.
机译:光的轨道角动量(OAM)为实现用于量子信息目的的多维状态(qudits)提供了一种有前途的方法。为了表征光子的轨道角动量自由度的二维子空间中编码的量子位的信息内容所经历的退化,我们研究了状态保真度如何受到沿光束传播方向的横向障碍物的影响。重点放在平面和径向硬边光阑函数对Laguerre-Gaussian横模态保真度和偏振-OAM混合纠缠光子对的纠缠特性的影响上。

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