首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Narrow bandwidth optimization using a polymer microring resonator in a thulium-holmium fiber laser cavity
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Narrow bandwidth optimization using a polymer microring resonator in a thulium-holmium fiber laser cavity

机译:使用聚合物微管谐振器在钬 - 钬纤维激光腔中的窄带宽优化

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摘要

A thulium-holmium fiber (THDF) laser cavity has been demonstrated with a SU-8 polymer microring resonator (PMRR) in the cavity. The PMRR has a 500 mu m radius and fabricated using the lithography method, with the SU-8 polymer acting as a host material. The butt coupling method was used for the horizontal coupling of light from a ultra-high numerical aperture (UHNA) fiber to the polymer waveguide. Lasing in the cavity without the PMRR is obtained at a center wavelength of 1.910 mu m, 1.869 mu m when the PMMR is inserted into the cavity. A maximum power of -5 dBm was extracted from the laser oscillator, and the laser linewidth was measured to be degrees 26.6 kHz by radio-frequency spectrum analyzer analysis. The PMRR was able to generate an output with a free spectral range of 0.79 mu m at a frequency of 59.25 GHz.
机译:在腔内用SU-8聚合物微管谐振器(PMRR)进行了钬纤维(THDF)激光腔。 PMRR具有500μm半径并使用光刻法制造,SU-8聚合物作用为主体材料。 对接耦合方法用于从超高数值孔径(UHA)纤维到聚合物波导的光的水平耦合。 当PMMR插入空腔时,在1.910μm,1.869μm的中心波长下获得在没有PMRR的腔中。 从激光振荡器提取-5 dBm的最大功率,通过射频谱分析仪分析测量激光线宽为度为26.6 kHz。 PMRR能够以59.25GHz的频率产生0.79μm的自由谱范围的输出。

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