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Four-Wave Mixing of Picosecond Pulses in Hollow Fibers: Phase Matching and the Influence of High-Order Waveguide Modes

机译:中空光纤中皮秒脉冲的四波混合:相位匹配和高阶波导模式的影响

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摘要

The processes of third-harmonic and difference-frequency generation through the four-wave mixing of picosecond pulses in gas filled hollow fibers are experimentally studied. Due to the improvement of phase-matching conditions with an appropriate choice of the gas pressure and optimal parameters of the hollow fiber, we were able to use hollow fibers with a large length (up to 30 cm) for difference-frequency generation, which resulted in a considerable increase in the power of the difference-frequency signal at the output of the fiber. Our experimental data reveal a considerable influence of high-order waveguide modes on four-wave mixing processes in a hollow fiber. It is shown that the waveguide regime of nonlinear optical interactions implemented in hollow fibers removes the limitations on the efficiency of third-harmonic and sum-frequency generation, which are characteristic of the tight-focusing regime in media with normal dispersion and which are due to the geometric phase shift arising in tightly focused light beams.
机译:实验研究了皮秒脉冲在充气中空纤维中的四波混合产生三次谐波和产生不同频率的过程。由于通过适当选择气压和中空纤维的最佳参数来改善相匹配条件,因此我们能够使用大长度(最大30 cm)的中空纤维来产生差频,这导致了光纤输出端的差频信号功率显着增加。我们的实验数据表明,高阶波导模式对中空纤维中四波混频过程的影响很大。结果表明,在中空纤维中实现的非线性光学相互作用的波导机制消除了三次谐波和和频产生效率的限制,这是具有正常色散的介质中紧聚焦机制的特征,这是由于在紧密聚焦的光束中产生的几何相移。

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