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Propagation and wavefront ambiguity of linear nondiffracting beams

机译:线性非衍射光束的传播和波前模糊度

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Ultrashort-pulsed Bessel and Airy beams in free space are often interpreted as "linear light bullets". Usually, interconnected intensity profiles are considered a "propagation" along arbitrary pathways which can even follow curved trajectories. A more detailed analysis, however, shows that this picture gives an adequate description only in situations which do not require to consider the transport of optical signals or causality. To also cover these special cases, a generalization of the terms "beam" and "propagation" is necessary. The problem becomes clearer by representing the angular spectra of the propagating wave fields by rays or Poynting vectors. It is known that quasi-nondiffracting beams can be described as caustics of ray bundles. Their decomposition into Poynting vectors by Shack-Hartmann sensors indicates that, in the frame of their classical definition, the corresponding local wavefronts are ambiguous and concepts based on energy density are not appropriate to describe the propagation completely. For this reason, quantitative parameters like the beam propagation factor have to be treated with caution as well. For applications like communication or optical computing, alternative descriptions are required. A heuristic approach based on vector field based information transport and Fourier analysis is proposed here. Continuity and discontinuity of far field distributions in space and time are discussed. Quantum aspects of propagation are briefly addressed.
机译:自由空间中的超短脉冲贝塞尔光束和艾里光束通常被解释为“线性光弹”。通常,相互连接的强度分布被认为是沿着任意路径的“传播”,这些路径甚至可以遵循弯曲的轨迹。然而,更详细的分析表明,该图片仅在不需要考虑光信号传输或因果关系的情况下提供了足够的描述。为了也包括这些特殊情况,必须对术语“光束”和“传播”进行概括。通过用射线或坡印廷矢量表示传播波场的角谱,问题变得更加明显。众所周知,准非衍射光束可以描述为光束的焦散。由Shack-Hartmann传感器将其分解为Poynting向量的过程表明,在其经典定义的框架内,相应的局部波前是模棱两可的,并且基于能量密度的概念不适合完全描述传播。由于这个原因,像光束传播因子这样的定量参数也必须谨慎对待。对于诸如通信或光学计算之类的应用程序,需要其他描述。本文提出了一种基于向量场的信息传递和傅里叶分析的启发式方法。讨论了远场分布在空间和时间上的连续性和不连续性。简要介绍了传播的量子方面。

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