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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Diffraction of an optical pulse as an expansion in ultrashort orthogonal Gaussian beam modes
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Diffraction of an optical pulse as an expansion in ultrashort orthogonal Gaussian beam modes

机译:光脉冲的衍射在超短正交高斯光束模式下的扩展

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摘要

The Laguerre-Gaussian (LG) beam expansion is described as a numerical and physical model of paraxial ultra-short pulse diffraction in the time domain. An overview of the dynamics of higher-order ultrashort planar LG modes is given through numerical simulations, and the finite width of these beams is shown to induce a dispersive-like axial broadening of the fields, which creates related variations in the on-axis amplitude of such pulses. The propagation of a pulsed plane wave scattered at an aperture is then illustrated as a finite weighted sum of individual planar LG pulses, which allows for intuitive illustration of the convergence of this expansion technique. By applying such an expansion to diffraction at a hard aperture, the planar pulsed LG beams are described as the paraxial analogs of the Bessel boundary waves typically observed in such situations, with both exhibiting superluminal group velocities along the optical axis. Numerical results of pulse diffraction at an aperture highlight the suitability of the LG expansion method for efficient and practical simulation of ultrashort fields in the paraxial regime.
机译:Laguerre-Gaussian(LG)光束扩展被描述为时域近轴超短脉冲衍射的数值和物理模型。通过数值模拟概述了高阶超短平面LG模式的动力学,并显示了这些光束的有限宽度会引起像场一样的色散轴向展宽,从而在轴上振幅上产生相关的变化。这样的脉冲。然后,将在一个孔径处散射的脉冲平面波的传播说明为单个平面LG脉冲的有限加权和,从而可以直观地说明此扩展技术的收敛性。通过将这种扩展应用于硬孔径处的衍射,平面脉冲LG光束被描述为通常在这种情况下观察到的贝塞尔边界波的近轴类似物,两者都沿光轴显示出超腔速。在孔径上进行脉冲衍射的数值结果凸显了LG扩展方法适用于近轴状态下超短视场的高效和实际仿真的适用性。

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