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Applying field mapping refractive beam shapers in laser technologies for solar energy

机译:应用领域映射折射梁成形器在激光技术中进行太阳能

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The flattop (uniform) and other intensity distributions of a laser beam are frequently considered as techniques to improve performance of laser technologies in manufacturing of solar cells. This task of creating these beam profiles can be easily solved with using beam shaping optics, for example, the field mapping refractive beam shapers like piShaper. The operation principle of these devices presumes transformation of laser beam intensity from Gaussian to flattop one with saving beam consistency, providing collimated output beam of low divergence, high transmittance, extended depth of field, capability to work with galvo-mirror scanning optics. The flattop, inverse Gauss, super Gauss, donut and other intensity distributions can be provided for the laser spots which size spans from microns to millimetres and centimetres; this makes these devices a powerful tool to improve the laser technologies like patterning, scribing, drilling, edge isolation, firing contacts, etc. This paper will describe some design basics of refractive beam shapers πShaper and optical layouts of their applying in various technologies for solar cell manufacturing. Examples of real implementations and experimental results will be presented as well.
机译:平顶(均匀)和激光束的其他强度分布经常认为是技术,以提高在制造太阳能电池的激光技术的性能。创建这些射束轮廓的此任务可以使用光束成形光学器件可以容易地解决,例如,字段映射折射光束成形器等piShaper。这些设备从推测高斯激光束强度的变换的动作原理,以一个平顶与节省束一致性,从而提供低发散,高透光率,扩展景深,能力与检流计反射镜的扫描光学系统的工作的准直输出光束。平顶,逆高斯,高斯超级,可以提供用于将激光光斑甜甜圈和其它强度分布,从微米到毫米和厘米大小跨度;这使得这些设备的强大的工具,以提高激光技术,如图形化,划线,钻孔,边缘隔离,烧成联系人等本文将描述折射光束成形器πShaper的一些设计基础和它们在各种技术用于太阳能应用的光学布局电池制造。还将呈现实际实现和实验结果的实例。

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