首页> 外文期刊>Journal of the Physical Society of Japan >Laguerre-Gaussian, Hermite-Gaussian, Bessel-Gaussian, and Finite-Energy Airy Beams Carrying Orbital Angular Momentum in Strongly Nonlocal Nonlinear Media
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Laguerre-Gaussian, Hermite-Gaussian, Bessel-Gaussian, and Finite-Energy Airy Beams Carrying Orbital Angular Momentum in Strongly Nonlocal Nonlinear Media

机译:Laguerre-Gaussian,Hermite-Gaussian,Bessel-Gaussian和有限能量通风梁在强烈非局部非线性介质中携带轨道角动量

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摘要

The propagation of two-dimensional beams is analytically and numerically investigated in strongly nonlocal nonlinear media (SNNM) based on the ABCD matrix. The two-dimensional beams reported in this paper are described by the product of the superposition of generalized Laguerre-Gaussian (LG), Hermite-Gaussian (HG), Bessel-Gaussian (BG), and circular Airy (CA) beams, carrying an orbital angular momentum (OAM). Owing to OAM and the modulation of SNNM, we find that the propagation of these two-dimensional beams exhibits complete rotation and periodic inversion: the spatial intensity profile first extends and then diminishes, and during the propagation the process repeats to form a breath-like phenomenon.
机译:基于ABCD基质,分析二维光束的传播和数量地研究了强不局部非线性介质(SNNM)。 本文报道的二维光束是由广义Laguerre-Gaussian(LG),Hermite-Gaussian(HG),贝塞尔-Gaussian(BG)和圆通气(CA)束的叠加产品的产品,携带 轨道角动量(OAM)。 由于OAM和SNNM的调制,我们发现这些二维光束的传播表现出完全旋转和周期性反转:空间强度分布首先延伸,然后在传播期间重复呼吸状 现象。

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