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基于普通石墨烯可饱和吸收体的光纤激光器中1565纳米和1944纳米的同步锁模

Simultaneous mode-locking at 1565 nm and 1944 nm in fiber laser based on common graphene saturable absorber.

作者信息

Sotor Jaroslaw, Sobon Grzegorz, Pasternak Iwona, Krajewska Aleksandra, Strupinski Wlodek, Abramski Krzysztof M

机构信息

Laser & Fiber Electronics Group, Wroclaw University of Technology, Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland.

出版信息

Opt Express. 2013 Aug 12;21(16):18994-9002. doi: 10.1364/OE.21.018994.

Abstract

We present for the first time to the best of our knowledge an all-fiber thulium (Tm) and erbium (Er) doped fiber laser simultaneously mode-locked by a common graphene saturable absorber. The laser consists of two ring resonators combined with a common saturable absorber (SA). The generated optical solitons have a full width at half maximum (FWHM) of 3.9 nm and 4.2 nm for Tm- and Er-doped laser, respectively. The used graphene layers were grown on copper foils by chemical vapor deposition (CVD) and transferred onto the fiber connector end. Broadband and flat absorption spectrum of used SA supports mode-locked operation at 1565 nm and 1944 nm. The repetition frequency of the resonator with Er-doped fiber was 20.19 MHz while the Tm-doped resonator was around 1 m longer and resulted with repetition rate of 18.43 MHz. The reported experiment unambiguously confirms one of the biggest advantage of the carbon nanomaterial (in this case graphene) SAs over semiconductor saturable absorption mirrors (SESAM), which is broadband operation range, allowing to mode-lock two lasers spectrally separated by almost 400 nm.

摘要

据我们所知,我们首次展示了一种全光纤掺铥(Tm)和掺铒(Er)光纤激光器,它由一个普通的石墨烯可饱和吸收体同时锁模。该激光器由两个环形谐振器与一个共用的可饱和吸收体(SA)组成。对于掺Tm和掺Er的激光器,产生的光孤子的半高全宽(FWHM)分别为3.9 nm和4.2 nm。所用的石墨烯层通过化学气相沉积(CVD)生长在铜箔上,并转移到光纤连接器端。所用SA的宽带平坦吸收光谱支持在1565 nm和1944 nm处的锁模操作。掺Er光纤谐振器的重复频率为20.19 MHz,而掺Tm谐振器长约1 m,重复频率为18.43 MHz。所报道的实验明确证实了碳纳米材料(在这种情况下为石墨烯)可饱和吸收体相对于半导体可饱和吸收镜(SESAM)的最大优势之一,即宽带工作范围,能够对光谱间隔近400 nm的两台激光器进行锁模。

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