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Refractive-diffractive dispersion compensation for optical vortex beams with ultrashort pulse durations

机译:具有超短脉冲持续时间的光学涡旋光束的折射-衍射色散补偿

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摘要

Wave fields, which are described mathematically by higher order Bessel functions, carry an orbital angular momentum and thus represent particular types of optical vortex beams with helical wavefronts. For the generation of such vortex beams, one may use, for instance, diffractive spiral axicons. Diffraction, however, leads invariably to strong dispersion, which is detrimental for ultrashort pulses since it leads to severe pulse broadening. This pulse broadening can be minimized or reduced completely (at least, in a specific plane of propagation) if the pulses propagate additionally through a medium with normal refractive dispersion. The refractive-diffractive generation of ultrashort vortex pulses was demonstrated earlier for a pulse duration of approximately 8 fs [Opt. Lett. 37, 3804 (2012)]. Here, we present an analytical description of the generation and propagation of these vortex beams and of the refractive-diffractive compensation of the dispersion.
机译:用高阶贝塞尔函数数学描述的波场带有轨道角动量,因此代表具有螺旋波前的光学涡旋光束的特定类型。为了产生这种涡旋束,可以使用例如衍射螺旋轴。然而,衍射总是导致强烈的色散,这对超短脉冲是有害的,因为它会导致严重的脉冲展宽。如果脉冲另外通过具有正常折射色散的介质传播,则可以将脉冲展宽最小化或完全消除(至少在特定的传播平面中)。较早的脉冲持续时间约为8 fs,证明了超短涡旋脉冲的折射衍射产生。来吧37,3804(2012)]。在这里,我们对这些涡旋光束的产生和传播以及色散的折射衍射补偿进行了分析描述。

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