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Non-Destructive Testing of Mid-IR Optical Fiber Using Infrared Imaging

机译:使用红外成像对中红外光纤进行无损检测

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Optical fiber lasers offers the advantage of being relatively compact and efficient. However, the materials such as fluoride and chalcogenide glasses used for their fabrication must be exempt of defects in order to make efficient laser systems. However, most existing quality control techniques are not compatible with chalcogenide fibers because of their limited transparency in the visible spectral range. For this reason, the Universite Laval's Centre d'optique, photonique et laser (COPL), in Quebec City, Canada, has developed a novel non-destructive testing (NDT) methodology based on infrared imaging to address this problem. The results show how this simple screening technique eases the selection of high-quality fibers for the design of high-power mid-IR lasers.
机译:光纤激光器具有相对紧凑和高效的优点。但是,为了制造高效的激光系统,用于制造的材料(例如氟化物和硫属化物玻璃)必须没有缺陷。但是,大多数现有的质量控制技术与硫族化物纤维不兼容,因为它们在可见光谱范围内的透明性有限。因此,位于加拿大魁北克市的拉瓦尔大学光与激光中心(COPL)开发了一种基于红外成像的新型无损检测(NDT)方法,以解决该问题。结果表明,这种简单的筛选技术如何简化了用于设计高功率中红外激光器的高质量光纤的选择。

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