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用于超连续谱产生的具有低零色散波长的单模悬浮大芯硫卤化物光纤。

Single-mode suspended large-core chalcohalide fiber with a low zero-dispersion wavelength for supercontinuum generation.

作者信息

Jiao Kai, Wang Xian-Ge, Liang Xiaolin, Bai Shengchuang, Zhao Zheming, Wang Xunsi, Zhang Peiqing, Dai Shixun, Nie Qiuhua, Wang Rongping

出版信息

Opt Express. 2022 Jan 3;30(1):641-649. doi: 10.1364/OE.447571.

Abstract

Chalcogenide glass possesses outstanding advantages, such as supercontinuum generation, but its nonlinear applications were limited by large zero-dispersion wavelength (ZDW). Traditional suspended-core fibers can shift the ZDW to near IR with a tiny core size of less than 5 µm but a large evanescent wave loss exists in these fibers. In this paper, we prepared a novel suspended-core fiber (SCF) based on chalcohalide glasses for the first time via the extrusion method, in which the ZDW of the fundamental mode in the fiber with a core size of larger than 30 µm was successfully shifted to 2.6 µm. We also calculated confinement loss (CL) of propagation modes and fundamental mode energy ratio in the fiber. We found that the minimum CL ratio of the high order modes (LP) to the CL of the fundamental mode is 124, indicating that the single-mode operation condition is satisfied when the wavelength is more than 4.6 µm. The lowest transmission loss is 1.2 dB/m at 6.5 µm. An ultra-broad supercontinuum spectrum, covering from 1.6 to 12 µm was generated in this suspended-core fiber pumped by a 5 µm femtosecond laser. Such a wide SC in the chalcogenide SCF is due to the large core size. All these results demonstrate the potential to use the large core SCF in the application of a mid-IR laser.

摘要

硫族化物玻璃具有出色的优点,如超连续谱产生,但其非线性应用受到大零色散波长(ZDW)的限制。传统的悬芯光纤可以将ZDW移至近红外区域,其纤芯尺寸极小,小于5微米,但这些光纤存在较大的倏逝波损耗。在本文中,我们首次通过挤压法制备了基于卤硫族化物玻璃的新型悬芯光纤(SCF),其中纤芯尺寸大于30微米的光纤中基模的ZDW成功移至2.6微米。我们还计算了光纤中传播模式的限制损耗(CL)和基模能量比。我们发现高阶模式(LP)的最小CL比与基模的CL之比为124,这表明当波长大于4.6微米时满足单模工作条件。在6.5微米处最低传输损耗为1.2分贝/米。在用5微米飞秒激光泵浦的这种悬芯光纤中产生了覆盖从1.6到12微米的超宽超连续谱。硫族化物悬芯光纤中如此宽的超连续谱是由于大的纤芯尺寸。所有这些结果证明了在中红外激光应用中使用大纤芯悬芯光纤的潜力。

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