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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >A comparison of far-field properties of radial noncanonical vortex airy beam arrays and radial noncanonical vortex Gaussian beam arrays
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A comparison of far-field properties of radial noncanonical vortex airy beam arrays and radial noncanonical vortex Gaussian beam arrays

机译:径向非规范涡旋高斯光束阵列远场特性的比较

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摘要

Based on the vector angular spectrum representation and stationary phase method, the analytical far field vectorial expressions of radial noncanonical vortex Airy beam arrays (NVAiBAs) and radial non canonical vortex Gaussian beam arrays (NVGBAs) are derived, and used to investigate their far-field vectorial properties, e.g. center optical vortices and energy fluxes of these corresponding beams, where the effect of noncanonical strength, topological charge, initial phase index and the number of beamlet on far-field vectorial properties of these corresponding beams is emphasized, respectively. The results show that the topological charge of center optical vortices in the far field is equal to initial phase index for the case of the radial NVAiBAs, whereas for radial NVGBAs the topological charge not only lies on initial phase index, but also is closely related to the odevity and sign of optical vortices embedded in beamlet, where mathematical analysis is made to explain the topological charge of center optical vortices, and the limitation of the number of beamlet to the topological charge of center optical vortices is also discussed. In addition, energy fluxes of radial NVAiBAs and NVGBAs exhibit different space orientations by controlling noncancial strength and present larger dark zones by increasing topological charge of beamlet, respectively. Finally, the relationship between the center optical vortices and energy fluxes of radial NVAiBAs and NVGBAs in even or odd N beamlets is also revealed, respectively. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于矢量角谱表示和平稳相方法,推导了径向非规范涡旋艾里光束阵列(NVAiBAs)和径向非规范涡旋高斯光束阵列(NVGBA)的解析远场矢量表达式,并对其进行了远场研究。向量性质,例如这些相应光束的中心光学涡旋和能量通量,分别强调了非规范强度,拓扑电荷,初始相位指数和子束数对这些相应光束的远场矢量特性的影响。结果表明,对于径向NVAiBAs,远场中心旋涡的拓扑电荷等于初始相位指数,而对于径向NVGBAs,拓扑电荷不仅位于初始相位指数上,而且与初始相位指数密切相关。对小束中嵌入的光学涡旋的刚度和符号进行了数学分析,以解释中心光学涡旋的拓扑电荷,并讨论了子束数目对中心光学涡旋的拓扑电荷的限制。此外,径向NVAiBAs和NVGBAs的能量通量通过控制非cancancial强度表现出不同的空间方向,并通过增加子束的拓扑电荷来呈现更大的暗区。最后,还揭示了偶数或奇数N小束中径向NVAiBAs和NVGBAs的中心光学涡旋与能量通量之间的关系。 (C)2016 Elsevier B.V.保留所有权利。

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