论文标题

在正常组速度分散的存在下,时空波数据包的光谱重组

Spectral reorganization of space-time wave packets in presence of normal group-velocity dispersion

论文作者

Hall, Layton A., Abouraddy, Ayman F.

论文摘要

时空波数据包(STWP)是线性介质中不变(无衍射或分散体)传播的脉冲梁。现在已经建立了STWPS在自由空间中的行为,最近在正常和异常分散体制中确认了它们的传播不变性。然而,在存在正常的组速度分散(GVD)的情况下,已经预计尚未观察到的丰富光谱重组动力学。实际上,正常GVD状态中的传播不变性与X形,双曲线,抛物线,抛物线,椭圆形甚至可分离的时空光谱兼容。这些广泛的场结构可以通过二维空间进行分类,该空间由STWP的组速度及其中央轴向波数参数化。在这里,我们在正常分散ZnSe中以$ \ sim1 $〜$〜$μ$ m的速度Znse的近端Znse观察到STWPS的整个光谱重组,并具有sTWPS的轴上脉冲宽度为$ \ sim \!200 $ 〜fs。通过调整STWP的组速度和中央轴向波数,我们观察到时空光谱的结构中的过渡,并验证其强度曲线的相关变化。这些结果为使用分散介质中的STWP启动新型相匹配的非线性过程奠定了基础。

Space-time wave packets (STWPs) are pulsed beams that propagate invariantly (without diffraction or dispersion) in linear media. The behavior of STWPs in free space is now well-established, and recently their propagation invariance was confirmed in both the normal and anomalous dispersion regimes. However, yet-to-be-observed rich dynamics of spectral reorganization have been predicted to occur in the presence of normal group-velocity dispersion (GVD). Indeed, propagation invariance in the normal-GVD regime is compatible with spatio-temporal spectra that are X-shaped, hyperbolic, parabolic, elliptical, or even separable along the spatial and temporal degrees-of-freedom. These broad varieties of field structures can be classified in a two-dimensional space parameterized by the group velocity of the STWP and its central axial wave number. Here we observe the entire span of spectral reorganization for STWPs in the paraxial regime in normally dispersive ZnSe at a wavelength $\sim1$~$μ$m with STWPs of on-axis pulse width of $\sim\!200$~fs. By tuning the group velocity and central axial wave number of the STWP, we observe transitions in the structure of the spatio-temporal spectrum and verify the associated change in its intensity profile. These results lay the foundation for initiating novel phase-matched nonlinear processes using STWPs in dispersive media.

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