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用于光轨道角动量的量子分束器:在非放大状态下通过四波混频实现的量子关联

Quantum beam splitter for orbital angular momentum of light: quantum correlation by four-wave mixing operated in a nonamplifying regime.

作者信息

Liu Wei, Ma Rong, Zeng Li, Qin Zhongzhong, Su Xiaolong

出版信息

Opt Lett. 2019 Apr 15;44(8):2053-2056. doi: 10.1364/OL.44.002053.

Abstract

Nondegenerate four-wave mixing (FWM) process based on a double-Λ scheme in hot alkali metal vapor is a versatile tool in quantum state engineering, quantum imaging, and quantum precision measurements. In this Letter, we investigate the generation of quantum correlated twin beams which carry nonzero orbital angular momentums (OAMs) based on the FWM process in hot cesium vapor. The amplified probe beam and the newly generated conjugate beam in the FWM process have the same and opposite topological charge as the seed beam, respectively. We also explore the FWM process operated in a nonamplifying regime where quantum correlated twin beams carrying OAMs can still be generated. In this regime, the FWM process plays the role of quantum beam splitter for the OAM of light; that is, a device that can split a coherent light beam carrying OAM into quantum-correlated twin beams carrying OAMs. More generally, our setup can be used as a quantum beam splitter of images.

摘要

基于热碱金属蒸汽中双Λ型结构的非简并四波混频(FWM)过程是量子态工程、量子成像和量子精密测量中的一种通用工具。在本信函中,我们研究了基于热铯蒸汽中FWM过程产生携带非零轨道角动量(OAM)的量子关联孪生光束。FWM过程中放大的探测光束和新产生的共轭光束分别与种子光束具有相同和相反的拓扑电荷。我们还探索了在非放大 regime 中运行的FWM过程,在该 regime 中仍然可以产生携带OAM的量子关联孪生光束。在这个 regime 中,FWM过程对光的OAM起到量子分束器的作用;也就是说,一种可以将携带OAM的相干光束分裂成携带OAM的量子关联孪生光束的装置。更一般地说,我们的设置可以用作图像的量子分束器。

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