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Improved optical efficiency of bulk laser amplifiers with femtosecond written waveguides

机译:具有飞秒写入波导的体激光放大器的光学效率提高

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In the paper we proposed improved technique of three-dimensional waveguides writing with direct femtosecond laser inscription technology. The technique allows, for the first time of our knowledge, production of waveguides with mode field diameter larger than 200 μm. This result broadens field of application of femtosecond writing technology into bulk laser schemes and creates an opportunity to develop novel amplifiers with increased efficiency. We proposed a novel architecture of laser amplifier that combines free-space propagation of signal beam with low divergence and propagation of pump irradiation inside femtosecond written waveguide with large mode field diameter due to total internal reflection effect. Such scheme provides constant tight confinement of pump irradiation over the full length of active laser element (3-10 cm). The novel amplifier architecture was investigated numerically and experimentally in Nd:phosphate glass. Waveguides with 200 μm mode field diameter were written with high frequency femtosecond oscillator. Proposed technique of three-dimensional waveguides writing based on decreasing and compensation of spherical aberration effect due to writing in heat cumulative regime and dynamic pulse energy adjustment at different depths of writing. It was shown, that written waveguides could increase optical efficiency of amplifier up to 4 times compared with corresponding usual free-space schemes. Novelty of the results consists in technique of femtosecond writing of waveguides with large mode field diameter. Actuality of the results consists in originally proposed architecture allows to improve up to 4 times optical efficiency of conventional bulk laser schemes and especially ultrafast pulse laser amplifiers.
机译:在本文中,我们提出了利用直接飞秒激光刻写技术改进的三维波导写入技术。该技术首次使我们知道了模场直径大于200μm的波导。该结果拓宽了飞秒写入技术在体激光方案中的应用范围,并为开发效率更高的新型放大器创造了机会。我们提出了一种新颖的激光放大器架构,该架构将低发散的信号束自由空间传播与飞秒写入波导内的泵浦辐射传播结合在一起,该飞秒由于全内反射效应而具有大的模场直径。这样的方案在有源激光元件的整个长度(3-10cm)上提供了对泵浦辐射的恒定的严格限制。在Nd:磷酸盐玻璃中对新型放大器架构进行了数值和实验研究。用高频飞秒振荡器写入具有200μm模式场直径的波导。提出了一种基于减少和补偿由于热累积状态下的写入和不同写入深度下的动态脉冲能量调整而引起的球面像差效应的三维波导写入技术。结果表明,与相应的常规自由空间方案相比,写入波导可以将放大器的光学效率提高多达4倍。结果的新颖性在于飞秒写入具有大模场直径的波导的技术。结果的真实性在于最初提出的体系结构,可将传统体激光方案(尤其是超快脉冲激光放大器)的光学效率提高多达4倍。

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