首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Ultrashort pulsed Bessel beams and spatially induced group-velocity dispersion
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Ultrashort pulsed Bessel beams and spatially induced group-velocity dispersion

机译:超短脉冲贝塞尔光束和空间诱发的群速度色散

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摘要

We find a new family of solutions of the nonparaxial wave equation that represents ultrashort pulsed light beam propagation in free space. The spatial and temporal parts of these pulsed beams are separable; the spatial transverse part is described by a Bessel function and remains unchanged during propagation, but the temporal profile can be arbitrary. Therefore the pulsed beam exhibits diffraction-free behavior with no transverse spreading, but the temporal part changes as if in a dispensive medium; the change is dominated by what we call spatially induced group-velocity dispersion. The analytical and numerical investigations show that the even- and odd-order spatially induced dispersions partially compensate for each other so as to give rise to pulse spreading, weakening, asymmetry, and center shift.
机译:我们找到了非旁轴波方程的新解族,它们代表了超短脉冲光束在自由空间中的传播。这些脉冲束的空间和时间部分是可分离的。空间横向部分由贝塞尔函数描述,在传播过程中保持不变,但时间分布可以是任意的。因此,脉冲光束表现出无衍射行为,没有横向扩展,但时间部分的变化就像在分散介质中一样。这种变化主要由我们所说的空间诱发的群速度色散主导。分析和数值研究表明,偶数和奇数空间诱发的色散部分相互补偿,从而引起脉冲扩展,减弱,不对称和中心偏移。

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