论文标题

充满气体的空心光子光子晶体纤维中色散波的光电离辅助,高效发射

Photoionization-assisted, high-efficiency emission of dispersive wave in gas-filled hollow-core photonic crystal fibers

论文作者

Chen, Yifei, Huang, Zhiyuan, Yu, Fei, Wu, Dakun, Fu, Jianhua, Wang, Ding, Pang, Meng, Leng, Yuxin, Xu, Zhizhan

论文摘要

我们证明,通过泵脉冲的光电离效应可以强烈增强25厘米长的空心光子光子晶体纤维(HC-PCF)的共振带(HC-PCF)的共振带(HC-PCF)的共振带中的相匹配的色散波(DW)发射。在实验中,我们观察到,随着脉冲能量的增加,由于孤子血浆相互作用,泵脉冲逐渐转移到较短的波长。当Blueshifting Soliton的中心波长接近HC-PCF的共振带时,可以获得高效的能量转移从泵光到可见区域的DW。在此DW发射过程中,我们还观察到DW的光谱中心逐渐转移到更长的波长,导致DW带宽略有稍微提高,这可以很好地解释为泵脉冲和DW之间的相匹配耦合的结果。特别是,在6 UJ的输入脉冲能量下,纤维输出处DW的光谱比率高达〜53%,转化效率约为19%。这些实验结果是通过数值模拟来解释的,它基于充满气体填充的HC-PCF的高效率频率上转换过程为高亮度光源铺平了道路。

We demonstrate that the phase-matched dispersive wave (DW) emission within the resonance band of a 25-cm-long gas-filled hollow-core photonic crystal fiber (HC-PCF) can be strongly enhanced by the photoionization effect of the pump pulse. In the experiments we observe that as the pulse energy increases, the pump pulse gradually shifts to shorter wavelengths due to soliton-plasma interactions. When the central wavelength of the blueshifting soliton is close to the resonance band of the HC-PCF, high-efficiency energy transfer from the pump light to the DW in the visible region can be obtained. During this DW emission process, we also observe that the spectral center of the DW gradually shifts to longer wavelengths leading to a slightly-increased DW bandwidth, which can be well explained as the consequence of phase-matched coupling between the pump pulse and the DW. In particular, at an input pulse energy of 6 uJ, the spectral ratio of the DW at the fiber output is measured to be as high as ~53% together with a conversion efficiency of ~19%. These experimental results, explained by numerical simulations, pave the way to high-brightness light sources based on high-efficiency frequency-upconversion processes in gas-filled HC-PCFs.

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