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悬浮芯As2S3硫系微结构光纤中的中红外超连续谱产生

Mid-infrared supercontinuum generation in a suspended-core As2S3 chalcogenide microstructured optical fiber.

作者信息

Gao Weiqing, El Amraoui Mohammed, Liao Meisong, Kawashima Hiroyasu, Duan Zhongchao, Deng Dinghuan, Cheng Tonglei, Suzuki Takenobu, Messaddeq Younès, Ohishi Yasutake

机构信息

Research Center for Advanced Photon Technology, Toyota Technological Institute, 2-12-1, Hisakata, Nagoya 468-8511, Japan.

出版信息

Opt Express. 2013 Apr 22;21(8):9573-83. doi: 10.1364/OE.21.009573.

Abstract

We demonstrate the supercontinuum (SC) generation in a suspended-core As(2)S(3) chalcogenide microstructured optical fiber (MOF). The variation of SC is investigated by changing the fiber length, pump peak power and pump wavelength. In the case of long fibers (20 and 40 cm), the SC ranges are discontinuous and stop at the wavelengths shorter than 3500 nm, due to the absorption of fiber. In the case of short fibers (1.3 and 2.4 cm), the SC ranges are continuous and can extend to the wavelengths longer than 4 μm. The SC broadening is observed when the pump peak power increases from 0.24 to 1.32 kW at 2500 nm. The SC range increases with the pump wavelength changing from 2200 to 2600 nm, corresponding to the dispersion of As(2)S(3) MOF from the normal to anomalous region. The SC generation is simulated by the generalized nonlinear Schrödinger equation. The simulation includes the SC difference between 1.3 and 2.4 cm long fiber by 2500 nm pumping, the variation of SC with pump peak power in 2.4 cm long fiber, and the variation of SC with pump wavelength in 1.3 cm long fiber. The simulation agrees well with the experiment.

摘要

我们展示了在悬浮芯As₂S₃硫系微结构光纤(MOF)中产生超连续谱(SC)的现象。通过改变光纤长度、泵浦峰值功率和泵浦波长来研究超连续谱的变化。对于长光纤(20厘米和40厘米),由于光纤吸收,超连续谱范围是不连续的,并且在波长小于3500纳米处停止。对于短光纤(1.3厘米和2.4厘米),超连续谱范围是连续的,并且可以延伸到波长大于4微米处。当泵浦峰值功率在2500纳米处从0.24千瓦增加到1.32千瓦 时,观察到超连续谱展宽。随着泵浦波长从2200纳米变化到2600纳米,超连续谱范围增加,这对应于As₂S₃微结构光纤从正常色散区域到反常色散区域的变化。利用广义非线性薛定谔方程对超连续谱的产生进行了模拟。模拟内容包括在2500纳米泵浦下1.3厘米和2.4厘米长光纤的超连续谱差异、2.4厘米长光纤中超连续谱随泵浦峰值功率的变化以及1.3厘米长光纤中超连续谱随泵浦波长的变化。模拟结果与实验结果吻合良好。

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