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首页> 外文期刊>Fiber and Integrated Optics >STIMULATED FOUR-PHOTON MIXING AND EFFICIENT POLYCHROMATIC VISIBLE LIGHT GENERATION IN SIO2-BASED SINGLE-MODE OPTICAL FIBERS PUMPED AT 1.319 MU-M
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STIMULATED FOUR-PHOTON MIXING AND EFFICIENT POLYCHROMATIC VISIBLE LIGHT GENERATION IN SIO2-BASED SINGLE-MODE OPTICAL FIBERS PUMPED AT 1.319 MU-M

机译:在1.319 MU-M泵浦的基于SIO2的单模光纤中激发的四光子混合和有效的多色可见光产生

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摘要

The generation of near-infrared and intense visible light through stimulated multiwave mixing processes in single-mode silica-based optical fibers pumped by a Q-switched and mode-locked Nd:YAG laser operated at 1.319 mu m is described The experimental results show that intense infrared light around 1.2 mu m is produced via self-phase-matched four-photon mixing at the minimum group velocity dispersion region of pure SiO2-core and P2O5-doped silica fibers. In the visible spectral region, from 580 nm to 600 nm, 20 W peak power 100-ps pulses were generated by pumping single spans of single-mode P2O5-doped and undoped SiO2-core fibers with 1.319-mu m laser pulses. The signal light generated in such fibers propagated in the LP(02) fiber mode and exhibited a threshold power that depended upon the fiber length and a critical length that was power dependent. Also, it exhibited an asymmetrical spectrum of a few nanometers bandwidth, with a long tail toward high frequencies. For GeO2-doped silica-based fibers, a multiple-wavelength visible signal propagating in several high-order fiber modes was generated. [References: 36]
机译:描述了通过在1.319μm下工作的Q开关和锁模Nd:YAG激光器泵浦的单模石英基光纤中的受激多波混合过程,产生了近红外和强可见光。实验结果表明:通过在纯SiO2芯和P2O5掺杂的石英纤维的最小群速度色散区域通过自相匹配的四光子混合产生约1.2微米的强红外光。在580 nm至600 nm的可见光谱范围内,通过用1.319μm激光脉冲泵浦单模掺P2O5和未掺杂SiO2芯光纤的单跨度,产生20 W峰值功率100 ps脉冲。在此类光纤中生成的信号光以LP(02)光纤模式传播,并显示取决于光纤长度的阈值功率和与功率相关的临界长度。而且,它表现出几纳米带宽的不对称频谱,并且朝向高频方向的长尾巴。对于GeO2掺杂的二氧化硅基光纤,生成了以几种高阶光纤模式传播的多波长可见信号。 [参考:36]

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