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Polymer optical waveguide composed of Europium-Aluminum-Acrylate composite core for compact optical amplifier and laser

机译:由Euro-铝-丙烯酸酯复合芯组成的聚合物光波导,用于紧凑型光放大器和激光器

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We successfully fabricate polymer waveguides with Europium-Aluminum (Eu-Al) polymer composite core using the Mosquito method that utilizes a microdispenser for realizing a compact waveguide optical amplifiers and lasers. Rare-earth (RE) ions are widely used as the gain medium for fiber lasers and optical fiber amplifiers. However, high concentration doping of rare-earth-ion leads to the concentration quenching resulting in observing less gain in optical amplification. For addressing the concentration quenching problem, a rare-earth metal (RE-M) polymer composite has been proposed by KRI, Inc. to be a waveguide core material. Actually, 10-wt% RE doping into organic polymer materials was already achieved. Hence, realization of compact and high-efficiency waveguide amplifiers and lasers have been anticipated using the RE-M polymer composite. In this paper, a microdispenser is adopted to fabricate a Eu-doped polymer waveguide. Then, it is experimentally confirmed that the low-loss waveguides are fabricated with a high reproducibility. Optical gain is estimated by measuring the amplified spontaneous emission using the variable stripe length method. The fabricated waveguide exhibits an optical gain as high as 7.1 dB/cm at 616-nm wavelength.
机译:我们使用Mosquito方法成功地用Euro铝(Eu-Al)聚合物复合材料芯制造了聚合物波导,该方法利用微分配器来实现紧凑的波导光学放大器和激光器。稀土(RE)离子被广泛用作光纤激光器和光纤放大器的增益介质。然而,稀土离子的高浓度掺杂导致浓度猝灭,导致在光学放大中观察到较少的增益。为了解决浓度猝灭问题,KRI公司已经提出稀土金属(RE-M)聚合物复合材料是波导芯材料。实际上,已经实现了向有机聚合物材料中掺杂10 wt%的RE。因此,已经期望使用RE-M聚合物复合材料实现紧凑和高效的波导放大器和激光器。在本文中,采用微分配器来制作掺Eu聚合物波导。然后,通过实验确认了以高再现性制造了低损耗波导。通过使用可变条纹长度方法测量放大的自发发射,可以估算光学增益。制成的波导在616 nm波长处的光学增益高达7.1 dB / cm。

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