首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Development of spot size and lateral intensity distribution generated by exponential, logarithmic, and linear axicons
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Development of spot size and lateral intensity distribution generated by exponential, logarithmic, and linear axicons

机译:由指数,对数和线性轴锥产生的光斑尺寸和横向强度分布的发展

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摘要

Axicons are known to produce a nearly Bessel beam transverse intensity distribution. It has been previously recognized that linear axicons and logarithmic axicons with a predefined distant depth of field (DOF) and no blocking present a development region characterized by an enlarged central spot size. In this paper, we aim to obtain a better insight on the formation of lateral light distribution in this development region. We also examine the spot size and transverse intensity distribution of the recently developed exponential axicon. We present experiments and detailed nonparaxial numerical simulations for a plane wave passing through these optical elements and show that the lateral intensity distribution they generate differs from that of a Bessel beam for a significant part of their DOF. This anomaly/irregularity in the formation of nondiffracting Bessel beams has to be taken into account in applications of these axicons, such as imaging or optical trapping.
机译:已知轴突会产生近乎贝塞尔光束的横向强度分布。先前已经认识到,具有预定的远景深(DOF)且没有遮挡的线性轴锥和对数轴锥呈现出以扩大的中心点尺寸为特征的显影区域。在本文中,我们旨在获得对该发育区域侧向光分布的形成的更好了解。我们还检查了最近开发的指​​数轴锥的光斑尺寸和横向强度分布。我们介绍了通过这些光学元件的平面波的实验和详细的非傍轴数值模拟,结果表明,它们产生的横向强度分布与自由度的很大一部分的贝塞尔光束不同。在这些轴锥的应用中,例如成像或光学陷波,必须考虑到非衍射贝塞尔光束形成中的这种异常/不规则性。

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