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A high efficiency quasi-three level thin film laser enabled on a sinusoidal grating substrate

机译:在正弦光栅基板上实现的高效准三能级薄膜激光器

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The excitation and emission properties of optical materials can be adjusted by nanostructures and to achieve high optical efficiency in the optically pump laser with short absorption length and high threshold pump power, we present and theoretically investigate a Yb-doped thin film on a 1D grating structure in this paper. High reflectivity at the pump and emission wavelength are realized simultaneously and in terms of the guided-mode resonance theory, the local field of high reflected light is enhanced which will increase the absorption of associated laser wavelength, we analyze parameters of the nanostructure in detail based on rigorous coupled-wave theory and an appropriate structure is decided. We set up a simple quasi-three-level model and demonstrate that this designed structure can effectively improve the optical efficiency of optically pump solid state laser.
机译:可以通过纳米结构调整光学材料的激发和发射特性,并在具有短吸收长度和高阈值泵浦功率的光学泵浦激光器中实现高光学效率,我们提出并在理论上研究了一维光栅结构上的掺Yb薄膜在本文中。同时实现了泵浦和发射波长的高反射率,并根据导模共振理论,增强了高反射光的局部场,这将增加相关激光波长的吸收,我们将详细分析纳米结构的参数基于严格的耦合波理论并确定了适当的结构。我们建立了一个简单的准三级模型,并证明了这种设计结构可以有效地提高光泵浦固态激光器的光学效率。

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