首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >High peak power continuum generation by high-order solitons at the mid-infrared wavelength in a photonic crystal fiber
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High peak power continuum generation by high-order solitons at the mid-infrared wavelength in a photonic crystal fiber

机译:高阶孤子在光子晶体光纤中的中红外波长产生高峰值功率连续谱

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摘要

A photonic crystal fiber (PCF) is fabricated from silica material purified by the complexing method of rectification and adsorption in our laboratory. The parameters of pump pulses and fiber length are optimized in the experiment, and the nonlinear optical process of the high-order soliton generation is studied. The high peak power continuums at the mid-infrared wavelength are generated by the overlap among the high-order soliton peaks. Specifically, when a PCF with a length of 60 cm is used, the conversion efficiency. and bandwidth B of the continuum generated can be up to 65% and 358 nm, and the corresponding peak power Ppeak-o and pulse width W-p are 144 kW and 30 fs. It is believed that the high peak power and broadband mid-infrared continuum can be used as short pulse sources, which will find important applications in biophotonics and ultrafast science and technology.
机译:光子晶体光纤(PCF)是由二氧化硅材料制成的,该材料是在我们的实验室中通过整流和吸附的复合方法纯化的。实验中优化了泵浦脉冲的参数和光纤长度,研究了高阶孤子产生的非线性光学过程。高阶孤峰之间的重叠产生了中红外波长的高峰值功率连续峰。具体地,当使用长度为60cm的PCF时,转换效率。所产生的连续体的带宽B可以达到65%和358nm,相应的峰值功率Ppeak-o和脉冲宽度W-p分别为144kW和30fs。人们相信,高峰值功率和宽带中红外连续谱可用作短脉冲源,这将在生物光子学和超快科学技术中找到重要的应用。

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