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在1016纳米泵浦的七芯光子晶体光纤中实现高功率可见增强型全光纤超连续谱产生。

High-power visible-enhanced all-fiber supercontinuum generation in a seven-core photonic crystal fiber pumped at 1016  nm.

作者信息

Qi Xue, Chen Shengping, Li Zhihong, Liu Tong, Ou Yang, Wang Nan, Hou Jing

出版信息

Opt Lett. 2018 Mar 1;43(5):1019-1022. doi: 10.1364/OL.43.001019.

Abstract

An 80 W 350-2400 nm monolithic supercontinuum (SC) source is reported. The high-power SC is generated in a uniform multi-core photonic crystal fiber (PCF) pumped by a 1016 nm pulsed fiber laser. The specially designed PCF has seven 4.5 μm diameter cores, a 0.85 air-filling fraction, and a zero dispersion wavelength (ZDW) of 991 nm. The 1016 nm pulsed laser delivers up to 114 W average power, which is believed to be the highest currently reported for picosecond fiber lasers working below 1020 nm. In order to ensure a robust and compact all-fiber structure, the pump laser is fusion spliced to the PCF using a selective air-hole collapse technique, achieving an ultra-low splicing loss of 0.2 dB despite the severe mode field mismatch. The proximity of the pump wavelength to the ZDW of PCF leads to enhanced visible generation. The output SC has a high spectral density of up to 108 mW/nm (at 580 nm) and over 50 mW/nm across the entire visible waveband. The achieved short-wavelength edge and high-spectral-power density in the visible region, to the best of our knowledge, are the best results reported for high-power visible SC sources.

摘要

报道了一种80W、波长范围为350 - 2400nm的单片超连续谱(SC)光源。该高功率超连续谱由一根均匀的多芯光子晶体光纤(PCF)产生,泵浦源为1016nm脉冲光纤激光器。这种经过特殊设计的光子晶体光纤有七个直径为4.5μm的纤芯,空气填充率为0.85,零色散波长(ZDW)为991nm。1016nm脉冲激光器的平均输出功率高达114W,据信这是目前报道的工作波长低于1020nm的皮秒光纤激光器中的最高值。为了确保全光纤结构坚固且紧凑,采用选择性气孔塌陷技术将泵浦激光器与光子晶体光纤熔接,尽管模场严重失配,但仍实现了0.2dB的超低熔接损耗。泵浦波长与光子晶体光纤零色散波长接近,增强了可见光的产生。输出的超连续谱具有高达108mW/nm(在580nm处)的高光谱密度,并且在整个可见光波段内超过50mW/nm。据我们所知,在可见光区域实现的短波边缘和高光谱功率密度是高功率可见光超连续谱光源所报道的最佳结果。

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