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Sub-half-cycle field transients from shock-wave-assisted soliton self-compression

机译:冲击波辅助孤子自压缩的半周期场瞬变

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摘要

( ) Single-ring hollow-core photonic-crystal fiber for soliton self-compression in the mid-infrared. ( ) Group velocity dispersion of the single-ring hollow PCF filled with argon at the pressure  = 0 bar (blue line), 5 bar (pink line), and 16 bar (green line). The fiber loss spectrum is shown by grey shading (calculations) and maroon line (experiment ). Also shown is the spectrum of the mid-IR driver pulse (blue shading). ( ) The effective refractive index as a function of the wavelength for the fundamental mode of the antiresonance-guiding hollow PCFs as shown in ( ). The fiber is filled with argon at a pressure of 16 atm. The dotted line shows the median value of the refractive index. Also shown the spectrum of a subcycle pulse generated as a result of soliton self-compression in this fiber (blue shading) and the spectrum of the input mid-IR pulse (grey shading).
机译:()用于中子孤子自压缩的单环空心光子晶体光纤。 ()在ring = 0 singlebar(蓝线),5 bar(粉红色线)和16 bar(绿线)的压力下,充满氩气的单环空心PCF的群速度色散。纤维损耗光谱用灰色阴影(计算)和栗色线(实验)表示。还显示了中红外驱动器脉冲的频谱(蓝色阴影)。 ()如()所示,反折射率空心PCF的基本模式的有效折射率与波长的关系。光纤中充满了16 atm的氩气。虚线表示折射率的中值。还显示了由于该光纤中的孤子自压缩而产生的子周期脉冲的频谱(蓝色阴影)和输入的中红外脉冲的频谱(灰色阴影)。

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