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Towards high-power all-fiber 2-5 μm supercontinuum generation in step-index chalcogenide fiber

机译:朝向高功率全纤维2-5μm超细素,在阶梯指数硫属化物纤维中产生

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Fiber-based mid-infrared supercontinuum (SC) sources benefit from their flexible structure and good beam quality that are suitable for spectroscopy and metrology. Chalcogenide fibers are good candidates for MIR SC generation because they exhibit high nonlinear refractive indices and wide transmission range. Due to the lack of robust MIR pump lasers, most of the current chalcogenide fibers based SCs have to adopt free-space complex and expensive optical parametric amplifiers as the pump light, with the sacrifice of the robustness and compactness. In this paper, an all-fiber based spectrally-flat 2-5 μm SC laser with high-power is reported in cascaded fluoride and chalcogenide step-index fibers. An all-fiber fluoride fiber based SC laser which spans from 2-4.2 μm is used as the pump light, which is then pumped into a step-index As_2S_3 fiber with core diameter of 7 μm to generate the final SC laser with spectrum beyond 5 μm. The pump coupling to the As_2S_3 fiber is realized with two methods separately. With the setup of aspheric lens coupling, the obtained SC laser has a 10 dB spectral bandwidth of 3000 nm spanning from 2050 to 5050 nm, corresponding to an average power of 57.6 mW. While with the all-fiber mechanical splicing, the 10 dB spectral bandwidth of the SC laser shrinks slightly, spanning from 2140 to 4980 nm range, and the average output power is further scaled up to 97.1 mW. To the best of our knowledge, it is the first time that a real high-power all-fiber chalcogenide-based MIR SC laser is present with flat spectrum beyond 5 μm. It offers a practical solution for high-power robust and reliable 2-5 μm broadband fiber laser.
机译:基于纤维的中红外超连续素(SC)源源于其灵活的结构和适用于光谱学和计量的良好光束质量。硫属化物纤维是MIR SC一代的良好候选者,因为它们表现出高的非线性折射率和宽传输范围。由于缺乏强大的MIR泵激光器,大多数基于目前的硫属化物纤维必须采用自由空间复合和昂贵的光学参数放大器作为泵灯,具有稳健性和紧凑性的牺牲。本文在级联氟化物和硫属化物阶梯指数纤维中报道了具有高功率的全纤维的基于光谱扁平的2-5μmSc激光器。跨越2-4.2μm的全纤维氟化物纤维的SC激光器用作泵浦光,然后将其泵入阶梯指数AS_2S_3光纤,核心直径为7μm,以产生频谱超过5的最终SC激光器μm。将泵耦合到AS_2S_3光纤,分别用两种方法实现。随着非球面透镜联轴器的设置,所获得的SC激光器具有10dB光谱带宽,跨越2050至5050nm,对应于57.6mW的平均功率。虽然具有全纤维机械拼接,但SC激光器的10 dB光谱带宽略微收缩,跨越2140至4980nm范围,并且平均输出功率进一步缩放到97.1mW。据我们所知,这是第一次获得基于真正的高功率全纤维硫属化物的MIR SC激光器,其具有超过5μm的平坦光谱。它为大功率稳健和可靠的2-5μm宽带光纤激光器提供了一种实用的解决方案。

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