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Ultra-broadband mid-infrared supercontinuum generation through dispersion engineering of chalcogenide microstructured fibers

机译:硫族化物微结构纤维的分散工程产生超宽带中红外超连续谱

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摘要

We demonstrate numerically that the use of dispersion-engineered microstrucured fibers made with chalcogenide glasses allows one to generate ultrabroadband supercontinuum spectra in the mid-infrared region by launching optical pulses at a suitable wavelength. As a specific example, numerical simulations show that such a 1 cm long fiber, made with Ge11.5As24Se64.5 glass and pumped at a wavelength of 3.1 μm using short pulses with a relatively modest peak power of 3 kW, can produce a spectrum extending from 1.3 μm to beyond 11 μm (more than 3 octaves). We consider three fiber structures with microstrucured air holes in their cladding and find their optimum designs through dispersion engineering. Among these, equiangular spiral microstrucured fiber is found to be the most promising candidate for generating an ultrawide supercontinuum in the mid-infrared region.
机译:我们从数值上证明,使用由硫族化物玻璃制成的色散工程化微结构纤维,可以通过在合适的波长发射光脉冲来在中红外区域生成超宽带超连续谱。作为一个具体示例,数值模拟表明,用Ge11.5As24Se64.5玻璃制成的这种1 cm长的光纤,并使用短脉冲以3.1μm的波长泵浦,具有相对适中的3 kW峰值功率,可以产生扩展的频谱。从1.3μm到超过11μm(超过3个八度)。我们考虑了在包层中具有微结构气孔的三种光纤结构,并通过色散工程找到了它们的最佳设计。其中,等角螺旋微结构纤维被认为是在中红外区域产生超宽超连续谱的最有希望的候选者。

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