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Generation of 3.5 W of diffraction-limited green light from SHG of a single tapered diode laser in a cascade of nonlinear crystals

机译:由单个锥形二极管激光器的SHG在非线性晶体级联中产生3.5 W的衍射极限绿光

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Many applications, e.g., within biomedicine stand to benefit greatly from the development of diode laser-based multi-Watt efficient compact green laser sources. The low power of existing diode lasers in the green area (about 100 mW) means that the most promising approach remains nonlinear frequency conversion of infrared tapered diode lasers. Here, we describe the generation of 3.5 W of diffraction-limited green light from SHG of a single tapered diode laser, itself yielding 10 W at 1063 nm. This SHG is performed in single pass through a cascade of two PPMgO:LN crystals with re-focusing and dispersion compensating optics between the two nonlinear crystals. In the low-power limit, such a cascade of two crystals has the theoretical potential for generation of four times as much power as a single crystal without adding significantly to the complexity of the system. The experimentally achieved power of 3.5 W corresponds to a power enhancement greater than 2 compared to SHG in each of the crystals individually and is the highest visible output power generated by frequency conversion of a single diode laser. Such laser sources provide the necessary pump power for biophotonics applications, such as optical coherence tomography or multimodal imaging devices, e.g., FTCARS-OCT, based on a strongly pumped ultrafast Ti:Sapphire laser.
机译:生物医学中的许多应用都将从基于二极管激光器的多瓦高效紧凑型绿色激光源的开发中受益匪浅。绿色区域中现有二极管激光器的低功率(约100 mW)意味着最有前途的方法仍然是红外锥形二极管激光器的非线性频率转换。在这里,我们描述了单个锥形二极管激光器的SHG产生的3.5 W衍射极限绿光,其自身在1063 nm处产生10W。该SHG通过两个PPMgO:LN晶体的级联单次通过,在两个非线性晶体之间具有重新聚焦和色散补偿光学器件。在低功率极限下,这种由两个晶体构成的级联在理论上具有产生单晶体四倍功率的潜力,而不会显着增加系统的复杂性。与单独在每个晶体中的SHG相比,实验获得的3.5 W功率对应于功率增强大于2,并且是通过单个二极管激光器的频率转换产生的最高可见光输出功率。此类激光源为生物光子学应用提供了必要的泵浦功率,例如基于强泵浦的超快Ti:蓝宝石激光器的光学相干断层扫描或多模态成像设备(例如FTCARS-OCT)。

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