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Diffraction-attenuation resistant beams: their higher-order versions and finite-aperture generations

机译:抗衍射衰减的光束:它们的高阶形式和有限孔径的产生

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摘要

Recently, a method for obtaining diffraction-attenuation resistant beams in absorbing media has been developed in terms of suitable superposition of ideal zero-order Bessel beams. In this work, we show that such beams keep their resistance to diffraction and absorption even when generated by finite apertures. Moreover, we shall extend the original method to allow a higher control over the transverse intensity profile of the beams. Although the method is developed for scalar fields, it can be applied to paraxial vector wave fields, as well. These new beams have many potential applications, such as in free-space optics, medical apparatus, remote sensing, and optical tweezers.
机译:最近,根据理想的零级贝塞尔光束的适当叠加,已经开发了一种在吸收介质中获得抗衍射衰减光束的方法。在这项工作中,我们证明了即使由有限的孔径产生的光束也能保持其抗衍射和吸收的能力。此外,我们将扩展原始方法,以允许对光束的横向强度分布进行更高的控制。尽管该方法是针对标量场开发的,但它也可以应用于近轴矢量波场。这些新光束具有许多潜在的应用,例如在自由空间光学,医疗设备,遥感和光学镊子中。

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