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Coupling of noncanonical optical vortices

机译:非规范光学涡旋的耦合

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摘要

When canonical vortices with different topological charges coexist in an optical beam, they inevitably become noncanonical during propagation. The noncanonical nature of optical vortices can be expressed in terms of morphological parameters, which can be represented in terms of a spinor, similar to the Jones vectors for polarization. This allows one to express the prefactor for a Gaussian beam containing two arbitrary vortices in terms of two terms. One is a product of two linearly propagating vortices. The other one, which is called the coupling term, represents the interaction between the vortices. The coupling term is independent of the vortex positions but depends on their initial morphological parameters. There are two situations where the interaction is zero. One is when the vortices are canonical with the same topological charge, and the other is when the vortices have the same anisotropy but with orthogonal orientations. The former situation is well known. The noninteraction of the latter situation is confirmed by a numerical simulation. (C) 2004 Optical Society of America.
机译:当具有不同拓扑电荷的规范涡流共存于光束中时,它们在传播过程中不可避免地变为非规范涡流。光学涡旋的非规范性质可以用形态学参数表示,可以用旋转子表示,类似于极化的琼斯矢量。这样就可以用两个项来表示包含两个任意涡旋的高斯光束的前置因子。一个是两个线性传播涡流的乘积。另一个称为耦合项,表示涡旋之间的相互作用。耦合项与涡旋位置无关,但取决于其初始形态参数。在两种情况下,交互为零。一种是当旋涡是具有相同拓扑电荷的正则,另一种是当旋涡具有相同的各向异性但具有正交方向时。前一种情况是众所周知的。通过数值模拟证实了后一种情况的不相互作用。 (C)2004年美国眼镜学会。

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