Chen Jun, Qi Guo-Zhen, Wu Yang, Shi Yan, Zhao Chun-Liu, Jin Shang-Zhong
Opt Express. 2023 Nov 6;31(23):38305-38317. doi: 10.1364/OE.504269.
In this paper, we present a novel form of a partially coherent beam characterized by classical entanglement in higher dimensions. We coin the term "twisted vector vortex (TVV) beam" to describe this phenomenon. Similar to multi-partite quantum entangled states in higher dimensions, the partially coherent twisted vector vortex beam possesses distinct properties such as non-uniform polarization, vortex phase, and twist phase. Through experiments, we offer empirical evidence for these three degrees-of-freedom in the light field. The results demonstrate that the state of the light is inseparable in terms of polarization and orbital angular momentum (OAM) modes. Additionally, the twist phase introduces an additional dimension in controlling the vector vortex beam. This research reveals the possibility of new controlling dimensions in classical entanglement through the chirality of coherence within partially coherent light. Consequently, this opens up new avenues for the utilization of partially coherent light in both classical and quantum domains.
在本文中,我们提出了一种新型的部分相干光束,其特征在于具有高维经典纠缠。我们创造了“扭曲矢量涡旋(TVV)光束”这一术语来描述这种现象。与高维多体量子纠缠态类似,部分相干扭曲矢量涡旋光束具有诸如非均匀偏振、涡旋相位和扭曲相位等独特性质。通过实验,我们为光场中的这三个自由度提供了经验证据。结果表明,光的状态在偏振和轨道角动量(OAM)模式方面是不可分离的。此外,扭曲相位在控制矢量涡旋光束方面引入了一个额外的维度。这项研究揭示了通过部分相干光中相干性的手性在经典纠缠中实现新控制维度的可能性。因此,这为部分相干光在经典和量子领域的应用开辟了新途径。