论文标题

时空波数据包的轴向光谱编码

Axial spectral encoding of space-time wave packets

论文作者

Motz, Alyssa Allende, Yessenov, Murat, Abouraddy, Ayman F.

论文摘要

时空(ST)波数据包是传播不变的脉冲光束,可以通过调整其时空光谱结构来在自由空间中调节组速度。迄今为止,综合ST波数据包的努力已努力保持其传播不变性。在这里,我们证明,可以独立于独立于其他人的单独控制,可以隔离并有目的地控制ST波数据包的一种自由度(其轴上频谱)。明智的时空光谱振幅和相位调制可产生沿传播轴的可编程光谱变化的ST波数据包;包括红色转移或蓝色转移光谱,或更复杂的轴向光谱编码,包括双向光谱偏移和加速光谱。在所有情况下,光谱移动都可以大于初始的轴轴带宽,同时保留其他自由度的传播不变性,包括波数据包时空轮廓。这些结果在显微镜或遥感通过光谱冲压的范围内可能很有用。

Space-time (ST) wave packets are propagation-invariant pulsed optical beams whose group velocity can be tuned in free space by tailoring their spatio-temporal spectral structure. To date, efforts on synthesizing ST wave packets have striven to maintain their propagation invariance. Here, we demonstrate that one degree of freedom of a ST wave packet -- its on-axis spectrum -- can be isolated and purposefully controlled independently of the others. Judicious spatio-temporal spectral amplitude and phase modulation yields ST wave packets with programmable spectral changes along the propagation axis; including red-shifting or blue-shifting spectra, or more sophisticated axial spectral encoding including bidirectional spectral shifts and accelerating spectra. In all cases, the spectral shift can be larger than the initial on-axis bandwidth, while preserving the propagation-invariance of the other degrees of freedom, including the wave packet spatio-temporal profile. These results may be useful in range-finding in microscopy or remote sensing via spectral stamping.

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