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Analytical expressions for the longitudinal evolution of nondiffracting pulses truncated by finite apertures

机译:有限孔径截断的非衍射脉冲的纵向演化的解析表达式

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摘要

Starting from some general and plausible assumptions based on geometrical optics and on a common feature of the truncated Bessel beams, a heuristic derivation is presented of very simple analytical expressions capable of describing the longitudinal (on-axis) evolution of axially symmetric nondiffracting pulses truncated by finite apertures. The analytical formulation is applied to several situations involving subluminal, luminal, or superluminal localized pulses, and the results are compared with those obtained by numerical simulations of the Rayleigh-Sommerfeld diffraction integrals. The results are in excellent agreement. The present approach can be rather useful, because it yields, in general, closed-form expressions, avoiding the need for time-consuming numerical simulations, and also because such expressions provide a powerful tool for exploring several important properties of the truncated localized pulses, such as their depth of fields, the longitudinal pulse behavior, and the decaying rates.
机译:从基于几何光学和截断的贝塞尔光束的共同特征的一些一般性和合理的假设出发,提出了一种非常简单的分析表达式的启发式推导,该表达式能够描述被截断的轴向对称非衍射脉冲的纵向(轴向)演化有限的孔径。该分析公式适用于涉及腔内,腔内或超腔局部脉冲的几种情况,并将结果与​​通过Rayleigh-Sommerfeld衍射积分的数值模拟获得的结果进行比较。结果非常吻合。本方法可能非常有用,因为它通常会产生闭式表达式,从而避免了耗时的数值模拟,并且由于此类表达式为探查截断的局部脉冲的几个重要特性提供了强大的工具,例如它们的景深,纵向脉冲行为和衰减率。

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