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Generation of arbitrary complex quasi-non-diffracting optical patterns

机译:产生任意复杂的准非衍射光学图案

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摘要

Due to their unique ability to maintain an intensity distribution upon propagation, non-diffracting light fields are used extensively in various areas of science, including optical tweezers, nonlinear optics and quantum optics, in applications where complex transverse field distributions are required. However, the number and type of rigorously non-diffracting beams is severely limited because their symmetry is dictated by one of the coordinate system where the Helmholtz equation governing beam propagation is separable. Here, we demonstrate a powerful technique that allows the generation of a rich variety of quasi-non-diffracting optical beams featuring nearly arbitrary intensity distributions in the transverse plane. These can be readily engineered via modifications of the angular spectrum of the beam in order to meet the requirements of particular applications. Such beams are not rigorously non-diffracting but they maintain their shape over large distances, which may be tuned by varying the width of the angular spectrum. We report the generation of unique spiral patterns and patterns involving arbitrary combinations of truncated harmonic, Bessel, Mathieu, or parabolic beams occupying different spatial domains. Optical trapping experiments illustrate the opto-mechanical properties of such beams.
机译:由于它们具有在传播时保持强度分布的独特能力,因此在需要复杂横向场分布的应用中,非衍射光场已广泛用于各种科学领域,包括光镊,非线性光学和量子光学。但是,严格无衍射光束的数量和类型受到严格限制,因为它们的对称性由控制光束传播的亥姆霍兹方程可分离的坐标系之一决定。在这里,我们演示了一种强大的技术,它可以生成各种各样的准非衍射光束,这些光束在横向平面上具有几乎任意强度的分布。通过修改光束的角谱可以很容易地设计它们,以满足特定应用的要求。这样的光束不是严格地无衍射的,但是它们在长距离上保持其形状,这可以通过改变角度光谱的宽度来调整。我们报告了独特的螺旋图案和图案的生成,这些图案涉及截短谐波,贝塞尔,马修或抛物线束的任意组合,它们占据了不同的空间域。光学陷波实验说明了这种光束的光机械性能。

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