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悬浮芯碲酸盐微结构光纤中的中红外超连续谱产生

Mid-infrared supercontinuum generation in suspended core tellurite microstructured optical fibers.

作者信息

Belal M, Xu L, Horak P, Shen L, Feng X, Ettabib M, Richardson D J, Petropoulos P, Price J H V

出版信息

Opt Lett. 2015 May 15;40(10):2237-40. doi: 10.1364/OL.40.002237.

Abstract

We report the fabrication of a tellurite optical fiber with a suspended core design, formed on a 220-nm-wide filament of glass. The fiber was pumped at two different wavelengths (1500 and 2400 nm) using femtosecond pulses generated from an optical parametric oscillator (OPO) in order to produce mid-infrared supercontinuum (SC). We observed that SC spectra extending to 3 μm were readily generated. To further optimize the design, detailed numerical study was performed, which revealed how the fiber structural characteristics dramatically influence the spectral broadening because of the changes in the dispersion profile and in turn, the interplay of nonlinear effects that give rise to SC generation. We found that an accurate control of the core shape can be employed to contain the generated SC spectra within well-defined spectral regions or to provide a broad extension of the continuum to beyond 4 μm.

摘要

我们报道了一种具有悬浮芯设计的碲酸盐光纤的制造,该光纤形成于一根220纳米宽的玻璃细丝上。使用光学参量振荡器(OPO)产生的飞秒脉冲在两个不同波长(1500纳米和2400纳米)下泵浦该光纤,以产生中红外超连续谱(SC)。我们观察到很容易产生延伸至3微米的超连续谱。为了进一步优化设计,进行了详细的数值研究,该研究揭示了由于色散分布的变化以及进而导致超连续谱产生的非线性效应之间的相互作用,光纤结构特性如何显著影响光谱展宽。我们发现,可以通过精确控制纤芯形状将产生的超连续谱限制在明确的光谱区域内,或者使连续谱广泛延伸至4微米以上。

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