首页> 外文会议>2008亚太光通信会议(Asia-Pacific Optical Communications 2008)论文集 >Tm3+-doped silica fiber laser output at 1.94μm with multi-mode FBG as cavity
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Tm3+-doped silica fiber laser output at 1.94μm with multi-mode FBG as cavity

机译:以多模FBG为腔的掺有Tm3 +的石英光纤激光器输出为1.94μm

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An all-fiber LD-clad-pumped Tm-doped fiber laser was reported, and the CW maximal output power reached 24W at nearly 1.94μm. The homemade double-clad Tm3+-doped fiber had a demission of 25/250μm with the core NA 0.13 and inner-clad NA 0.46. A matched passive multi-mode FBG acted as the front cavity. The cavity was build-up by the high reflectivity FBG and fiber end Fresnel reflectivity. The all-fiber scheme was build-up by splicing the pigtail fiber, FBG fiber and Tm3+-doped fiber. Cooling by the water, the 56% high slope efficiency was achieved and threshold was 6.4W, respected to the launched pump power. When the output power was less-than 3W, the output laser was single-peak operating at 1936.4 nm with a very narrow linewidth (50 pm) laser output. Increasing the launched pump power, the output laser wavelength grew to 3~4 peaks. The multimode fiber Bragg grating (FBG) transmission spectrum was also measured with a matched 82cm Nufern Tm3+-doped fiber as fluorescent sources. With the dichroic and the FBG building up cavity, the output laser characteristics were also investigated. Because the multi-mode FBG reflectivity was not very high, both ends of the fiber laser had laser output power, and the ratio was nearly 10:1. As we know, it was the first time to report the multi-mode FBG all-fiber laser. Under this simple Tm3+-doped fiber laser scheme, we estimated that the maximal output power could reach several ten watts.
机译:据报道,全光纤LD包层泵浦的Tm掺杂光纤激光器,CW的最大输出功率在接近1.94μm时达到24W。自制的双包层掺Tm3 +光纤的发射率为25 /250μm,芯线NA为0.13,内包层NA为0.46。匹配的无源多模FBG用作前腔。高反射率FBG和光纤末端菲涅耳反射率可形成空腔。通过拼接尾纤,FBG光纤和掺有Tm3 +的光纤来构建全光纤方案。通过水冷却,相对于泵送功率,达到了56%的高斜率效率,阈值为6.4W。当输出功率小于3W时,输出激光器是单峰工作于1936.4 nm,具有非常窄的线宽(50 pm)激光器输出。增加发射的泵浦功率,输出激光波长增加到3〜4个峰值。还使用匹配的82厘米Nufern Tm3 +掺杂光纤作为荧光源,测量了多模光纤布拉格光栅(FBG)的透射光谱。随着分色和FBG腔的建立,还研究了输出激光的特性。由于多模FBG的反射率不是很高,因此光纤激光器的两端都具有激光输出功率,该比率接近10:1。众所周知,这是首次报告多模FBG全光纤激光器。在这种简单的掺有Tm3 +的光纤激光器方案下,我们估计最大输出功率可以达到几十瓦。

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