Huang Zhiyuan, Wang Ding, Chen Yifei, Zhao Ruirui, Zhao Yu, Nam Sungmo, Lim Changhwan, Peng Yujie, Du Juan, Leng Yuxin
Opt Express. 2018 Dec 24;26(26):34977-34993. doi: 10.1364/OE.26.034977.
We numerically investigate the generation of wavelength-tunable few-cycle pulses in the visible spectral region through soliton-plasma interactions. We found that in a He-filled single-ring photonic crystal fiber (SR-PCF), soliton-plasma interactions could shift the optical spectra of pulses propagating in the fiber to shorter wavelengths. Through adjusting the single pulse energy launched into the fiber, the central wavelength of these blueshifting pulses could be continuously tuned over hundreds of nanometers, while maintaining a high energy conversion efficiency of >57%. Moreover, we observed that during the nonlinear pulse propagation in the SR-PCF, soliton self-compression effects enhanced the plasma density in the fiber at high pulse energies, which could modulate the phase-matching condition of ultraviolet (UV) dispersive wave (DW) generation. Furthermore, we employed the recently-developed model to study numerically the loss and dispersion of the SR-PCF in its resonant and anti-resonant spectral regions, and demonstrated the remarkable influence of the core-cladding resonance on the process of soliton-plasma interactions. The numerical results demonstrated here pave the way to develop wavelength-tunable, few-cycle light sources in the visible region, which may have considerable application potential in pump-probe spectroscopy and strong-field physics.
我们通过数值方法研究了在可见光谱区域通过孤子 - 等离子体相互作用产生波长可调谐的少周期脉冲。我们发现,在充满氦气的单环光子晶体光纤(SR-PCF)中,孤子 - 等离子体相互作用可以使在光纤中传播的脉冲光谱向更短波长移动。通过调整注入光纤的单脉冲能量,这些蓝移脉冲的中心波长可以在数百纳米范围内连续调谐,同时保持高于57%的高能量转换效率。此外,我们观察到在SR-PCF中非线性脉冲传播过程中,孤子自压缩效应在高脉冲能量下增强了光纤中的等离子体密度,这可以调制紫外(UV)色散波(DW)产生的相位匹配条件。此外,我们采用最近开发的模型对SR-PCF在其共振和反共振光谱区域的损耗和色散进行了数值研究,并证明了纤芯 - 包层共振对孤子 - 等离子体相互作用过程的显著影响。这里展示的数值结果为在可见光区域开发波长可调谐的少周期光源铺平了道路,这在泵浦 - 探测光谱学和强场物理中可能具有相当大的应用潜力。