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Design and performance of a refractive optical system that converts a Gaussian to a flattop beam

机译:将高斯转换为平顶光束的折射光学系统的设计和性能

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摘要

A system of two aspheric lenses is described, which efficiently converts a collimated Gaussian beam to a flattop beam. Departing from earlier designs, both aspheric surfaces were convex, simplifying their fabrication; the output beam was designed with a continuous roll-off, allowing control of the far-field diffraction pattern; and diffraction from the entrance and exit apertures was held to a negligible level. The design principles are discussed in detail, and the performance of the as-built optics is compared quantitatively with the theoretical design. Approximately 78% of the incident power is enclosed in a region with 5% rms power variation. The 8-mm-diameter beam propagates approximately 0.5 m without significant change in the intensity profile; when the beam is expanded to 32 mm in diameter, this range increases to several meters.
机译:描述了两个非球面透镜的系统,该系统将准直的高斯光束有效地转换为平顶光束。与早期的设计不同,两个非球面都是凸面的,从而简化了制造过程。输出光束设计为具有连续滚降,从而可以控制远场衍射图;来自入口孔和出口孔的衍射保持在可以忽略的水平。详细讨论了设计原理,并与理论设计定量地比较了制成的光学器件的性能。大约78%的入射功率被封闭在rms功率变化为5%的区域中。直径为8毫米的光束传播约0.5 m,强度分布没有明显变化。当光束直径扩大到32毫米时,此范围会增加到几米。

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