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二氧化硅悬浮芯光纤中的高效超连续谱产生

Efficient supercontinuum generations in silica suspended core fibers.

作者信息

Fu Libin, Thomas Brian K, Dong Liang

机构信息

IMRA America Inc., 1044 Woodridge Avenue, Ann Arbor, MI 48105, USA.

出版信息

Opt Express. 2008 Nov 24;16(24):19629-42. doi: 10.1364/oe.16.019629.

Abstract

We have experimentally studied supercontinuum generations in highly nonlinear suspended core silica fibers as alternatives to photonic crystal fibers. Octave-spanning spectrum can be easily generated at peak pump power levels as low as approximately 1.5 kW at 1 microm and approximately 1 kW at 800 nm, which effectively enables f ceo stabilization of mode-locked fiber lasers without further amplification. Experiments also confirm that the blue edge of the supercontinuum undergoes a two-phase growth process, an initial fast growth governed by phase-matched dispersive wave generation and a second slower growth governed by group-velocity-matched cross-phase modulation. We have further experimentally shown that the fundamental solitons generated from the initial fission process can be independent of pump powers and the orders which they are generated. Furthermore, while the fundamental soliton wavelength undergoes continuous red shift by Raman scattering, they continuously lose power to longer wavelength dispersive waves where phase-matching to this long wavelength dispersive wave is allowed and, otherwise, maintain its initial power where phase-matching to long wavelength dispersive wave is not allowed. We also demonstrated that total suppression of dispersive wave generation at short wavelength can be achieved in the absence of dispersion slope at the pump wavelength.

摘要

我们已对高非线性悬芯石英光纤中的超连续谱产生进行了实验研究,以作为光子晶体光纤的替代方案。在1微米波长处,峰值泵浦功率低至约1.5千瓦,在800纳米波长处低至约1千瓦的情况下,可轻松产生倍频程跨度的光谱,这有效地实现了锁模光纤激光器的载波频率偏移稳定,而无需进一步放大。实验还证实,超连续谱的蓝边经历了一个两阶段的增长过程,初始的快速增长由相位匹配的色散波产生主导,第二个较慢的增长由群速度匹配的交叉相位调制主导。我们进一步通过实验表明,初始裂变过程产生的基孤子可以与泵浦功率及其产生的阶数无关。此外,虽然基孤子波长通过拉曼散射不断发生红移,但它们会不断向允许与长波长色散波相位匹配的更长波长色散波损失功率,否则,在不允许与长波长色散波相位匹配的情况下保持其初始功率。我们还证明,在泵浦波长处不存在色散斜率的情况下,可以实现对短波长色散波产生的完全抑制。

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