论文标题
平面多模型波导中时空超模型的理论
Theory of space-time supermodes in planar multimode waveguides
论文作者
论文摘要
当光脉冲聚焦于多模层波导或纤维中时,能量将分为可用的引导模式。因此,最初的局部强度横向扩散,空间轮廓会随着轴向传播的快速变化,并且脉冲分散在时间上。时空(ST)超模型是脉冲引导的场配置,通过将每种模式分配给规定的波长,可以在多模型波导中不变。因此,ST超模型可以被视为在自由空间中最近证明的传播不变的ST波数据包的光谱离散的,指导的波。 ST超模的组速度原则上可以独立调谐,从原理上讲,消除或大大减少了群速度分散体,并且在不存在模式耦合的情况下,沿波导的时间平均强度沿波导沿波导轴向不变。我们在这里建立了一个理论框架,用于研究平面波导中的S型超模型。模态工程允许从轴上峰或倾角(暗光束)到多峰或平坦的分布来雕刻这种轴向不变的横向强度轮廓。此外,可以使用频谱不一致的光合成ST超模型,从而为光束传递中的潜在应用铺平了道路,以进行照明应用。
When an optical pulse is focused into a multimode waveguide or fiber, the energy is divided among the available guided modes. Consequently, the initially localized intensity spreads transversely, the spatial profile undergoes rapid variations with axial propagation, and the pulse disperses temporally. Space-time (ST) supermodes are pulsed guided field configurations that propagate invariantly in multimode waveguides by assigning each mode to a prescribed wavelength. ST supermodes can be thus viewed as spectrally discrete, guided-wave counterpart of the recently demonstrated propagation-invariant ST wave packets in free space. The group velocity of an ST supermode is tunable independently -- in principle -- of the waveguide structure, group-velocity dispersion is eliminated or dramatically curtailed, and the time-averaged intensity profile is axially invariant along the waveguide in absence of mode-coupling. We establish here a theoretical framework for studying ST supermodes in planar waveguides. Modal engineering allows sculpting this axially invariant transverse intensity profile from an on-axis peak or dip (dark beam), to a multi-peak or flat distribution. Moreover, ST supermodes can be synthesized using spectrally incoherent light, thus paving the way to potential applications in optical beam delivery for lighting applications.