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[飞秒脉冲在光子晶体光纤中产生超连续谱的研究]

[Study on the Supercontinuum Generation with Femtosecond Pulse in Photonic Crystal Fiber].

作者信息

Wei Yuan-fei, Zhao Fu-li, Shen Peng-gao, Wu Shi-qiang

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2015 Dec;35(12):3283-6.

Abstract

Physical mechanism of supercontinuum generation in photonic crystal fiber by femtosecond laser pulse has been investigated experimentally. In this study, we used the tunable output wavelength Ti: sapphire optical parametric amplifier as the pump source and the fiber spectrometer acquired the spectrogram of supercontinuum generation in photonic crystal fiber under different power and wavelength conditions, then we normalized the spectrograms and make a comparison of them. PCF supercontinuum differences affected by physical mechanisms were analyzed. We found that when increasing the incident pump pulse power, the spectral width will be gradually widened, there are more peaks, part of the energy will transfer in to the short-wave- length region; as long as it reaches a certain intensity, width of supercontinuum finally saturated, the shape of supercontinuum was also stabilized. As the incident power was settled at 300 milliwatt and the length of PCF was settled at 105 millimeter, experimental results show that width and shape of supercontinuum are affected by the wavelength of pump pulse, in the range of 760 to 840 nm, there appears more and more peaks with the increase of incident wavelength; at anomalous dispersion the spectrogram of supercontinuum generation will be more flat and more wider as the wavelength of pump pulse closer to zero point.

摘要

对飞秒激光脉冲在光子晶体光纤中产生超连续谱的物理机制进行了实验研究。在本研究中,我们使用可调谐输出波长的钛宝石光参量放大器作为泵浦源,并用光纤光谱仪获取了光子晶体光纤在不同功率和波长条件下产生超连续谱的光谱图,然后对光谱图进行归一化并进行比较。分析了受物理机制影响的光子晶体光纤超连续谱差异。我们发现,当增加入射泵浦脉冲功率时,光谱宽度将逐渐变宽,出现更多峰值,部分能量将转移到短波区域;只要达到一定强度,超连续谱宽度最终饱和,超连续谱形状也稳定下来。当入射功率设定为300毫瓦且光子晶体光纤长度设定为105毫米时,实验结果表明,超连续谱的宽度和形状受泵浦脉冲波长的影响,在760至840纳米范围内,随着入射波长的增加出现越来越多的峰值;在反常色散情况下,随着泵浦脉冲波长接近零点,超连续谱产生的光谱图将更平坦且更宽。

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