论文标题

时空波数据包

Space-time wave packets

论文作者

Yessenov, Murat, Hall, Layton A., Schepler, Kenneth L., Abouraddy, Ayman F.

论文摘要

“时空”(ST)波数据包构成了一类广泛的脉冲光场,它们在无衍射或分散的线性介质中僵硬地运输,因此在没有光学非线性或波形结构的情况下是传播不变的。这样的波数据包具有独特的特征,例如自由空间中的可控群速度和外来折射现象。这些行为的根源是基于ST波数据包的基本特征:相对于空间和时间的自由度,它们的光谱不能分离。实际上,时空结构具有非差异的角度分散,其中每个空间频率与单个规定的波长相关联。此外,偏离这种特定时空结构会产生新的行为,这些行为偏离了以精确的方式脱离繁殖不变性,例如,群体速度的任意轴向分布,可调色散曲线,可调性分散曲线和塔尔伯特在时空中的效应。尽管自1980年代以来就已经知道了ST波数据包的基本概念,但直到最近才出现了快速的实验发展。时空傅立叶合成的创新使这些进步成为可能,从而在梁光学和超快光学元件的交汇处打开了一个新的边界。

"Space-time" (ST) wave packets constitute a broad class of pulsed optical fields that are rigidly transported in linear media without diffraction or dispersion, and are therefore propagation-invariant in absence of optical nonlinearities or waveguiding structures. Such wave packets exhibit unique characteristics, such as controllable group velocities in free space and exotic refractive phenomena. At the root of these behaviors is a fundamental feature underpinning ST wave packets: their spectra are not separable with respect to the spatial and temporal degrees of freedom. Indeed, the spatio-temporal structure is endowed with non-differentiable angular dispersion, in which each spatial frequency is associated with a single prescribed wavelength. Furthermore, deviation from this particular spatio-temporal structure yields novel behaviors that depart from propagation invariance in a precise manner, such as acceleration with an arbitrary axial distribution of the group velocity, tunable dispersion profiles, and Talbot effects in space-time. Although the basic concept of ST wave packets has been known since the 1980's, only very recently has rapid experimental development emerged. These advances are made possible by innovations in spatio-temporal Fourier synthesis, thereby opening a new frontier for structured light at the intersection of beam optics and ultrafast optics.

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