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Vortex avalanche in the perturbed singular beams

机译:涡旋雪崩在扰动的奇异梁中

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We have theoretically and experimentally considered transforming a single optical vortex beam into the vortex avalanche caused by weak local perturbations of the holographic grating responsible for the beam shaping. The vortex avalanche is accompanied by a sharp change of the orbital angular momentum (OAM) so that its dependence on the holographic grating perturbations forms the OAM spectrum. We revealed that the restored vortex beam has anomalous regions of the OAM spectrum in a form of sharp dips and bursts (resonances) that occur when the integer perturbation parameter coincides with a topological charge of one of the vortex modes. We found also that the intensity of the perturbed beam is nonuniformly distributed among the vortex modes with positive and negative topological charges. They form two groups of satellites with clearly marked intensity maxima. As the grating perturbation increases, the initial beam intensity is almost completely pumped over into the vortex avalanche with nearly the same energy redistribution among the satellites. (C) 2019 Optical Society of America
机译:理论上和实验地认为将单个光学涡流转换为由负责梁成形的全息光栅的局部扰动弱引起的涡流雪崩。涡旋雪崩伴随着轨道角动量(OAM)的急剧变化,使其对全息光栅扰动的依赖形成OAM光谱。我们透露,恢复的涡流光束具有以尖锐的倾角形式的OAM光谱的异常区域,并且在整数扰动参数与其中一个涡流模式的拓扑电荷一致时发生的突出骤降和突发(共振)。我们发现,扰动光束的强度在涡流模式中不均匀地分布,具有正极和负拓扑电荷。它们形成两组卫星,具有明显标记的强度最大值。随着光栅扰动增加,初始光束强度几乎完全泵入涡流雪崩,在卫星之间具有几乎相同的能量再分配。 (c)2019年光学学会

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