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Extension of supercontinuum spectrum, generated in photonic crystal fiber, by using chirped femtosecond pulses

机译:利用chi飞秒脉冲扩展光子晶体光纤中产生的超连续谱

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We present results of experimental and numerical investigation of supercontinuum generation in polarization maintaining photonic crystal fiber (PCF) using chirped femtosecond pulses. The initial unchirped pump pulse source was a mode-locked Yb:KGW laser generating 52 nJ energy 110 fs duration pulses at 1030 nm with 76 MHz repetition rate. The nonlinear medium was a 32 cm long polarization maintaining PCF manufactured by NKT Photonics A/S. We demonstrated the influence of pump pulse chirp on spectral characteristics of supercontinuum. We showed that by chirping pump pulses positively or negatively one can obtain broader supercontinuum spectrum than in case of unchirped pump pulses at the same peak power. Moreover, the extension can be controlled by changing the amount of pump pulse chirp. In our case the supercontinuum spectrum width was extended by up to 115 nm (at maximum chirp value of +10500 fs~2 that we could achieve in our setup) compared to the case of unchirped pump at the same peak power.
机译:我们目前的实验结果和数值研究的超chi谱产生在使用maintaining飞秒脉冲的偏振保持光子晶体光纤(PCF)中。最初的未激发泵浦脉冲源是锁模Yb:KGW激光器,在1030 nm处产生52 nJ能量110 fs持续时间的脉冲,重复频率为76 MHz。非线性介质是由NKT Photonics A / S制造的32cm长的偏振保持PCF。我们证明了泵浦脉冲chi对超连续谱的光谱特性的影响。我们表明,与在相同峰值功率下未泵激脉冲的情况相比,通过正向或负向地泵激脉冲可以获得更宽的超连续谱。此外,可以通过改变泵浦脉冲线性调频脉冲的数量来控制扩展。与在相同峰值功率下未泵浦的泵浦情况相比,在我们的情况下,超连续谱的光谱宽度最大扩展了115 nm(在我们的设置中可以达到的最大chi值+10500 fs〜2)。

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