Instruments and standard measurement procedures for laser beam characterization

R. Maestle, C. Schmitz, F. Varnik, A. Giesen, H. Huegel
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引用次数: 1

Abstract

The EUREKA-project CHOCLAB (Characterization of Optical Components and Laser Beams), which was initiated in 1995, aims to investigate and develop instruments and standard measurement procedures for laser beam and laser optics characterization. From the start of the project, one of the main work items in the field of laser beam characterization has been the determination of the beam propagation parameters (beam width, divergence angle and beam propagation factor). The most common measurement devices for these purposes are 2d-matrix-cameras (i.e. CCD-cameras), 1d or 2d scanning devices (i.e. scanning pinholes and/or moving knife- edges)--both of them requiring further evaluation of the measured power density distribution to obtain laser beam parameters--and variable transmission/reflectivity optical elements, which allow the direct measurement of beam properties. The advantages and drawbacks of the different types of measurement devices, as well as measures to reduce systematical and statistical errors will be discussed.
激光光束特性的仪器和标准测量程序
eureka项目CHOCLAB(光学元件和激光束表征)于1995年启动,旨在研究和开发用于激光束和激光光学表征的仪器和标准测量程序。从项目开始,激光束表征领域的主要工作项目之一就是确定光束传播参数(光束宽度、发散角和光束传播系数)。用于这些目的的最常见的测量设备是2d矩阵相机(即ccd相机),1d或2d扫描设备(即扫描针孔和/或移动刀口)-它们都需要进一步评估测量的功率密度分布以获得激光束参数-可变传输/反射率光学元件,允许直接测量光束特性。不同类型的测量设备的优点和缺点,以及减少系统和统计误差的措施将被讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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