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Tunable Supercontinuum Generated in a Yb3+-Doped Microstructure Fiber Pumped by Ti:Sapphire Femtosecond Laser

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【作者】 王伟孟凡超卿源邱石董婷婷朱维震左玉婷韩颖王超齐跃峰侯蓝田

【Author】 Wei Wang;Fan-Chao Meng;Yuan Qing;Shi Qiu;Ting-Ting Dong;Wei-Zhen Zhu;Yu-Ting Zuo;Ying Han;Chao Wang;Yue-Feng Qi;Lan-Tian Hou;School of Information Science and Engineering, Yanshan University;Jiangsu Key Laboratory of Meteorological Observation and Information Processing, Nanjing University of Information Science and Technology;Key Laboratory for Special Fiber and Fiber Sensor of Hebei Province;Intelligence and Information Engineering college, Tangshan University;

【通讯作者】 王伟;

【机构】 School of Information Science and Engineering Yanshan UniversityJiangsu Key Laboratory of Meteorological Observation and Information Processing Nanjing University of InformationScience and TechnologyKey Laboratory for Special Fiber and Fiber Sensor of Hebei ProvinceIntelligence and Information Engineering college Tangshan University

【摘要】 We experimentally demonstrate that a tunable supercontinuum(SC) can be generated in a Yb3+-doped microstructure fiber by the concept of wavelength conversion with a Ti:sapphire femtosecond(fs) laser as the pump.Experimental results show that an emission light around 1040 nm in an anomalous dispersion region is first generated and amplified by fs pulses in the normal dispersion region. Then, SC spectra from 1100 to 1380 nm and 630 to 840 nm can be achieved by combined effects of higher-order soliton fission and Raman soliton self-frequency shift in the anomalous dispersion region and self-phase modulation, dispersive wave, and four-wave mixing in the normal dispersion region. It is also demonstrated that the 20 nm change of pump results in a 280 nm broadband shift of soliton and the further red-shift of soliton is limited by OH-absorption at 1380 nm.

【Abstract】 We experimentally demonstrate that a tunable supercontinuum(SC) can be generated in a Yb3+-doped microstructure fiber by the concept of wavelength conversion with a Ti:sapphire femtosecond(fs) laser as the pump.Experimental results show that an emission light around 1040 nm in an anomalous dispersion region is first generated and amplified by fs pulses in the normal dispersion region. Then, SC spectra from 1100 to 1380 nm and 630 to 840 nm can be achieved by combined effects of higher-order soliton fission and Raman soliton self-frequency shift in the anomalous dispersion region and self-phase modulation, dispersive wave, and four-wave mixing in the normal dispersion region. It is also demonstrated that the 20 nm change of pump results in a 280 nm broadband shift of soliton and the further red-shift of soliton is limited by OH-absorption at 1380 nm.

【关键词】 solitonsapphireanomaloustunablemixingfissionpumpingdispersivesubsequentsilica
【基金】 Supported by the National Natural Science Foundation of China under Grant No 61735011;the Natural Science Foundation of Hebei Province under Grant Nos F2016203389 and F2018105036;the Science and Technology Research Project of College and University in Hebei Province under Grant No BJ2017108;the Open Subject of Jiangsu Key Laboratory of Meteorological Observation and Information Processing under Grant No KDXS1107;the Science and Technology Project of Tangshan City under Grant No 17130257a
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2018年10期
  • 【分类号】TN249
  • 【下载频次】42
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