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Diffractive element design for resonant scanner angular correction: a beam retardation approach

机译:用于共振扫描仪角度校正的衍射元件设计:光束延迟方法

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摘要

A new approach for designing diffractive optical corrective elements with zooming capability to convert nonlinear sinusoidal scanning into linear scanning is proposed. Such a device will be useful for linearizing the angular scan of a resonant mirror scanner. The design methodology is to create a graded index of a refraction device as the reference design with its index of refraction parameters based on beam retardation through propagation in an inhomogeneous medium. The diffractive element is designed by utilizing a binarizing algorithm of the accumulated phase from transmission through the refractive element. In contrast to a prior approach, which was introduced based on the beam propagation through inhomogeneous media, the new approach takes beam diameters into consideration. This makes both the refractive element and its associated diffractive element more robust against beam fanning.
机译:提出了一种设计新的具有缩放能力的衍射光学校正元件,将非线性正弦扫描转换为线性扫描。这样的设备对于线性化谐振镜扫描器的角度扫描将是有用的。该设计方法论是基于在非均匀介质中传播而引起的光束延迟,以折射率参数创建折射率设备的渐变折射率作为参考设计。通过利用从折射元件透射来的累积相位的二值化算法来设计衍射元件。与基于光束通过不均匀介质传播而引入的现有方法相反,该新方法考虑了光束直径。这使得折射元件及其相关的衍射元件对光束扇动都更加坚固。

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