用于精密激光束转向的快速转向镜系统设计

Qingkun Zhou, P. Ben-Tzvi, D. Fan, A. Goldenberg
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引用次数: 49

摘要

精确的激光束控制在军事、生物医学和工业等众多应用中至关重要。在具有挑战性的环境中,激光束的精确指向尤为重要。受环境影响,光信号可能会出现断续、漂移等现象。控制抖动干扰是控制转向性能的核心问题。在分析角光束转向系统原理的基础上,提出了设计快速转向镜结构和激光光学转向系统布局的一些重要因素。在激光束应用中,FSM提出了更多的挑战,因为需要在链路中涉及的两个源之间极其精确地指向。柔性铰链具有柔性机构,与传统的旋转关节相比具有许多优点,用于构建FSM结构。在精确的激光束转向中,有必要将激光束转向目标并在很长一段时间内以极高的精度保持对齐。为了使系统有效,采用四象限探测器作为入射光的传感器。讨论了所开发的控制回路的设计和实验装置的概念。介绍了激光光束抖动控制试验台,改进了激光光束抖动控制技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of Fast Steering Mirror systems for precision laser beams steering
Precision laser beam steering is critical in numerous applications, such as military, biomedical and industrial. Precise pointing of laser beams is particularly essential in challenging environments. The optical signal may break and wander due to environmental influences. The core problem of steering performances is to deal with the jitter disturbance. Based on the analysis of principle of angle beam steering system, some important factors to design the structure of fast steering mirror (FSM) and the layout of laser optics steering system are presented. In laser beam applications, FSM presents more challenges in terms of the need for extremely precise pointing between two sources involved in the link. Flexure hinges with compliant mechanisms, with several advantages over classical rotational joints, are used to build the FSM structure. In precise laser beam steering it is necessary to steer a laser beam to a target and maintain the alignment with extreme precision over long periods of time. To make the system effective, a 4-quadrant detector has been used as the sensor for the incoming light. A design of the developed control loop and concepts for the experimental setup are discussed. A laser beam jitter control test bed is also introduced to improve jitter control techniques.
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