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1.06 µm picosecond pulsed, normal dispersion pumping for generating efficient broadband infrared supercontinuum in meter-length single-mode tellurite holey fiber with high Raman gain coefficient

机译:1.06μm皮秒脉冲正常色散泵浦,用于在具有高拉曼增益系数的米长单模亚碲酸盐多孔光纤中生成高效宽带红外超连续谱

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摘要

We investigate efficient broadband infrared supercontinuum generation in meter-length single-mode small-core tellurite holey fiber. The fiber is pumped by 1.06µm picosecond pulses in the normal dispersion region. The high Raman gain coefficient and the broad Raman gain bands of the tellurite glass are exploited to generate a cascade of Raman Stokes orders, which initiate in the highly normal dispersion region and quickly extend to longer wavelengths across the zero dispersion wavelength with increasing pump power. A broadband supercontinuum from 1.06µm to beyond 1.70µm is generated. The effects of the pump power and of the fiber length on the spectrum and on the power conversion efficiency from the pump to the supercontinuum are discussed. Power scaling indicates that using this viable normal dispersion pumping scheme, 9.5 W average output power of infrared supercontinuum and more than 60% conversion efficiency can be obtained from a 1 m long tellurite fiber with a large mode area of 500µm2.
机译:我们研究了米长单模小芯亚碲酸盐多孔光纤中高效宽带红外超连续谱的产生。在正常色散区中,光纤被1.06µm皮秒脉冲泵浦。利用碲化物玻璃的高拉曼增益系数和宽拉曼增益带来生成级联的拉曼斯托克斯阶次,这些阶跃在高度正常的色散区域内启动,并随着泵浦功率的增加而迅速扩展至零色散波长范围内的更长波长。产生了从1.06µm到超过1.70µm的宽带超连续谱。讨论了泵浦功率和光纤长度对频谱以及从泵浦到超连续谱的功率转换效率的影响。功率定标表明,使用这种可行的常规色散泵浦方案,可以从长模面积为500µm2的1 m长碲酸盐光纤中获得9.5 W的红外超连续谱平均输出功率和60%以上的转换效率。

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