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Theory of four-wave mixing of cylindrical vector beams in optical fibers

机译:光纤中圆柱形矢量梁四波混合理论

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Cylindrical vector (CV) beams are a set of transverse spatial modes that exhibit a cylindrically symmetric intensity profile and a variable polarization about the beam axis. They are composed of a non-separable superposition of orbital and spin angular momenta. Critically, CV beams are also the eigenmodes of optical fiber and, as such, are of widespread practical importance in photonics and have the potential to increase communications bandwidth through spatial multiplexing. Here, we derive the coupled amplitude equations that describe the four-wave mixing (FWM) of CV beams in optical fibers. These equations allow us to determine the selection rules that govern the interconversion of CV modes in FWM processes. With these selection rules, we show that FWM conserves the total angular momentum, the sum of orbital and spin angular momenta, in the conversion of two input photons to two output photons. When applied to spontaneous FWM, the selection rules show that photon pairs can be generated in CV modes directly and can be entangled in those modes. Such quantum states of light in CV modes could benefit technologies such as quantum key distribution with satellites. (C) 2020 Optical Society of America
机译:圆柱形矢量(CV)梁是一组横向空间模式,其展示圆柱形强度曲线和围绕梁轴的可变极化。它们由轨道和旋转角动量的不可分离的叠加组成。批判性地,CV梁也是光纤的特征模点,因此,在光子学中具有广泛的实际重要性,并且具有通过空间多路复用增加通信带宽的可能性。这里,我们得出了描述光纤中的CV光束的四波混合(FWM)的耦合幅度方程。这些方程允许我们确定控制CV模式在FWM过程中的互联的选择规则。通过这些选择规则,我们表明FWM在将两个输入光子转换为两个输出光子的总角度,轨道和自旋角动量的总角度,轨道和旋转角动量的总和。当应用于自发的FWM时,选择规则表明光子对可以直接以CV模式生成,并且可以在这些模式下纠缠在一起。 CV模式下的这种量子态可以利用卫星量子密钥分布等技术。 (c)2020美国光学学会

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