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二氧化硅光子晶体光纤中单波长、双波长和三波长泵浦产生超连续谱的实验研究。

Experimental investigation on supercontinuum generation by single, dual, and triple wavelength pumping in a silica photonic crystal fiber.

作者信息

Gao Weiqing, Xu Qiang, Li Xue, Zhang Wei, Hu Jigang, Li Yuan, Chen Xiangdong, Yuan Zijun, Liao Meisong, Cheng Tonglei, Xue Xiaojie, Suzuki Takenobu, Ohishi Yasutake

出版信息

Appl Opt. 2016 Nov 20;55(33):9514-9520. doi: 10.1364/AO.55.009514.

Abstract

We investigate the supercontinuum (SC) generation in an 1 cm long silica photonic crystal fiber (PCF) pumped by the pulse sources with single, dual, and triple wavelengths, respectively. The silica PCF has two zero-dispersion wavelengths at 900 and 2620 nm, respectively. When pumped by a single wavelength, the SC spectral range covers about 1000 nm. When pumped by dual and triple wavelengths, the SC spectral range covers wider than 2000 nm. Both the SC spectral range and the flatness are improved obviously when pumped by triple wavelengths. The maximum SC spectral range is obtained when the silica PCF is pumped by the triple wavelengths at 800, 1450, and 1785 nm. The SC spectral range covers 2810 nm from 350 to 3160 nm wider than three octaves. The 10 dB bandwidth covers 2280 nm from 450 to 2730 nm wider than two octaves. This is the first investigation on comparison of the SCs generated by different pump wavelengths up to three experimentally. The generated SC spectra have covered the full transmission window of silica fiber.

摘要

我们分别研究了由单波长、双波长和三波长脉冲源泵浦的1厘米长二氧化硅光子晶体光纤(PCF)中的超连续谱(SC)产生情况。该二氧化硅PCF分别在900纳米和2620纳米处有两个零色散波长。当由单波长泵浦时,SC光谱范围覆盖约1000纳米。当由双波长和三波长泵浦时,SC光谱范围覆盖超过2000纳米。当由三波长泵浦时,SC光谱范围和平坦度都有明显改善。当二氧化硅PCF由800纳米、1450纳米和1785纳米的三波长泵浦时,可获得最大的SC光谱范围。SC光谱范围从350纳米到3160纳米覆盖2810纳米,超过三个倍频程。10分贝带宽从450纳米到2730纳米覆盖2280纳米,超过两个倍频程。这是首次对多达三种不同泵浦波长产生的SC进行实验比较的研究。所产生的SC光谱覆盖了二氧化硅光纤的整个传输窗口。

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