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Theoretical and experimental properties of a binary linear beam-splitting element with a large fan angle

机译:大扇角二元线性分束元件的理论和实验性质

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Diffractive beam-splitting elements with a large fan angle of about 45degrees were realized as binary phase elements for application in a commercial laser device operating at the wavelength of 635 nm. The fan-out elements designated to split a laser beam into a line of 43 equal power spots were fabricated in silica by means of microstructuring techniques and replicated in acrylate by ultraviolet curing. Two different gratings have been designed using scalar unidirectional iterative methods, based on the iterative discrete on-axis and on the direct binary search algorithms. The optical properties of both gratings obtained by these scalar methods were compared with simulations based on rigorous electromagnetic calculations in order to verify and control the application-relevant specifications. The experimentally measured optical performance of the replicated fan-out elements is in good agreement with the theoretical predictions. The complete procedure for realizing the linear beam splitters, that is the design method, the fabrication of the master, and the replication process, will be presented. The optical properties and characteristic data of the replicas will be compared with scalar simulations as well as rigorous calculations; the results will be discussed.
机译:具有约45度的大扇角的衍射分束元件被实现为用于在635nm波长下操作的商用激光装置中应用的二元相元件。通过微结构化技术在二氧化硅中制造了用于将激光束分成43个相等功率点的线的扇形元件,并通过紫外线固化在丙烯酸酯中复制。基于迭代离散轴上和直接二进制搜索算法,已使用标量单向迭代方法设计了两种不同的光栅。将通过这些标量方法获得的两个光栅的光学特性与基于严格电磁计算的仿真进行了比较,以验证和控制与应用相关的规格。复制的扇出元件的实验测量光学性能与理论预测非常吻合。将介绍实现线性分束器的完整过程,即设计方法,母版的制造和复制过程。复制品的光学特性和特征数据将与标量模拟以及严格的计算进行比较;结果将被讨论。

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