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Chalcogenide Glasses As a Medium for Controlling Parameters of Ultrashort IR Pulses: II

机译:硫属化物玻璃作为控制超短红外脉冲参数的介质:II

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摘要

The propagation of ultrashort optical pulses in planar chalcogenide glass waveguides with uniform or periodic claddings is considered. In comparison with silica waveguides a structure based on chalcogenide glass provides higher nonlinearity. This material has a high normal dispersion in the wavelength range of 1.5-3.5 μm. Periodic waveguide structures can be used to compensate for this dispersion. High-intensity laser pulses propagating in these structures undergo spectral broadening. The influence of the phase self-modulation of a pulse on its spectrum and width is analyzed using numerical simulations.
机译:考虑了超短光脉冲在具有均匀或周期性包层的平面硫族化物玻璃波导中的传播。与二氧化硅波导相比,基于硫族化物玻璃的结构具有更高的非线性。该材料在1.5-3.5μm的波长范围内具有很高的标准色散。周期波导结构可用于补偿这种色散。在这些结构中传播的高强度激光脉冲会发生光谱展宽。使用数值模拟分析了脉冲的相位自调制对其频谱和宽度的影响。

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