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Spectral Splitting of Optical Pulses Inside a Dispersive Medium at a Temporal Boundary

机译:色散介质在时间边界内的光脉冲光谱分裂

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We show numerically that the spectrum of an optical pulse splits into multiple, widely separated, spectral bands when it arrives at a temporal boundary across which the refractive index suddenly changes. At the same time, the pulse breaks into several temporally separated pulses traveling at different speeds. The number of such pulses depends on the dispersive properties of the medium. We study the effect of second- and third-order dispersion in detail but also briefly consider the impact of other higher order terms. A temporal waveguide formed with two temporal boundaries can reflect the temporally separated pulses again and again, increasing the number of pulses trapped within the temporal waveguide.
机译:我们用数字显示光脉冲的光谱到达到达折射率突然改变的时间边界时会分裂成多个,广泛分离的光谱带。同时,脉冲分成几个以不同速度行进的时间上分开的脉冲。这种脉冲的数量取决于介质的分散特性。我们不仅详细研究了二阶和三阶色散的影响,而且还简要考虑了其他高阶项的影响。由两个时间边界形成的时间波导可以一次又一次地反射时间上分开的脉冲,从而增加了在时间波导内捕获的脉冲数量。

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