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Near-field anomalous spectral behavior in diffraction of a Gaussian pulsed beam from an annular aperture

机译:高斯脉冲光束从环形孔的衍射中的近场异常光谱行为

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摘要

Based on the Fresnel diffraction integral and by introducing a hard-aperture function into a finite sumof complex Gaussian functions, the approximate analytical expression for the near-field spectral intensity distribution of a space-time-dependent Gaussian pulsed beam passing through an annular aperture is derived, which permits us to study the on- and off-axis spectral anomalies that are near phase singu-larities of the diffracted Gaussian pulsed beam in the near-field. The expressions for a circular black screen and a circular aperture are given as special cases of the general results. The relative spectral shift of a space-time-dependent Gaussian pulsed beam versus the different values of the truncation parameters and the position parameters of observation points are also studied and illustrated with numerical calculations. It is shown that the spectral switch appears near phase singularities in the near-field, and the near-field spectral behavior depends on the truncation parameters, the pulse duration tau, and the position parameter. The results of this work have potential applications in free-space information encoding and transmission.
机译:基于菲涅耳衍射积分,并将硬孔径函数引入复高斯函数的有限和中,时空相关高斯脉冲光束通过环形孔径的近场光谱强度分布的近似解析表达式为推导得出,这使我们能够研究在近场中衍射的高斯脉冲束的相位正弦附近的轴上和轴外光谱异常。圆形黑屏和圆形光圈的表达式作为一般结果的特殊情况给出。还研究了时空相关的高斯脉冲光束的相对光谱位移与截断参数和观察点位置参数的不同值的关系,并通过数值计算进行了说明。结果表明,光谱开关在近场中出现在相位奇异点附近,并且近场光谱行为取决于截断参数,脉冲持续时间tau和位置参数。这项工作的结果在自由空间信息编码和传输中具有潜在的应用。

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