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Ultrafast Laser Inscription and ∼2 μm Laser Operation of Y-Branch Splitters in Monoclinic Crystals

机译:超快激光题字和y-Branch分离器中的〜2μm激光操作在单斜晶体中

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We report on the first active surface Y-branch waveguide in the similar to 2 mu m spectral range. Depressed-cladding rectangular-cross-section surface waveguides with a splitting ratio of 1 x 2 are fabricated by femtosecond direct laser writing in a thulium (Tm3+) doped monoclinic double tungstate crystal. Confocal laser microscopy and mu-Raman spectroscopy reveal well preserved crystallinity of the waveguide core. Under high-brightness laser pumping at 0.8 mu m, a simultaneous continuous-wave laser operation in both arms is achieved resulting in a total output power of 0.46 W at similar to 1.84 mu m with a slope efficiency of 40.6% and a laser threshold of 0.28 W. The laser output is linearly polarized and spatially multimode (TE12/TE22) with a power splitting ratio between arms of 52.1/47.9%). The waveguide propagation losses at 1.84 mu m are similar to 1.6 dB/cm and the loss from the Y-junction is 0.1 dB. The fabricated waveguides represent a route towards advanced photonic micro-structures such as a Mach-Zehnder interferometer for bio-sensing at similar to 2 mu m.
机译:我们在类似于2μm光谱范围内报告第一有源表面Y分支波导。具有分裂比为1×2的压下包层的矩形横截面表面波导由小螺旋(TM3 +)掺杂单冠状双钨晶晶体中的飞秒直射写作制造。共聚焦激光显微镜和亩拉曼光谱揭示了波导芯的良好保存的结晶度。在高亮度激光泵送0.8μm下,实现两个臂中的同时连续波激光操作,导致0.46W的总输出功率与1.84μm相似,斜率为40.6%和激光阈值0.28W。激光输出是线性偏振的和空间多模(TE12 / TE22),其功率分裂比为52.1 / 47.9%之间的功率分裂比)。 1.84 mu m的波导传播损耗类似于1.6dB / cm,Y接合点的损耗为0.1dB。制造的波导代表了向高级光子微结构的途径,例如Mach-Zehnder干涉仪,用于类似于2μm的生物感测。

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