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Spectrum-induced changes in diffraction of pulsed optical beams

机译:光谱引起的脉冲光束衍射变化

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摘要

Propagation of ultrashort optical pulses in a linear homogeneous medium is studied using the standard diffraction theory of electromagnetic fields. Diffraction pattem of a Gaussian beam consisting of such short pulses depends on the pulse shape. In general, the pulsed beam does not remain Gaussian on propagation and its spot size is enhanced. In the visible region, changes in the diffracted intensity become noticeable only for puise widths below 10 fs and are iarger for chirped pulses and for pulses whose spectrum has long tails. We also show that the diffraction characteristics of coherent but pulsed and CW but partially coherent Gaussian beams are identical if the two have identical optical spectra.
机译:使用标准的电磁场衍射理论研究了超短光脉冲在线性均匀介质中的传播。由这种短脉冲组成的高斯光束的衍射图取决于脉冲形状。通常,脉冲光束在传播时不会保持高斯状态,并且其光斑尺寸会增加。在可见光区域,衍射强度的变化仅对于低于10 fs的皮斯宽度才变得明显,并且对于chi脉冲和频谱具有长尾巴的脉冲而言更大。我们还表明,如果两者具有相同的光谱,则相干但脉冲和CW但部分相干高斯光束的衍射特性相同。

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