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Efficient fabrication of fused-fiber biconical taper structures by a scanned CO_(2) laser beam technique

机译:通过扫描CO_(2)激光束技术高效制造熔融纤维双锥锥形结构

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The driving mechanism of a scanning mirror can cause significant impairment of expanded beam properties, which we investigated for several scanning waveforms. Engineering on the scanning waveform is then carried out by a scanned CO_(2) laser beam technique to enlarge the uniform heating region for stretching and sintering of silica fibers. Details of the derivation are given. A simple thermal model is presented to account for the relationship between the scanning beam profile and the taper shape. Fusion profiles are also compared for various scanning waveforms. The corresponding scanned beam power distributions are determined experimentally, which enables us to determine precise power density conditions for CO_(2) laser fusion.
机译:扫描镜的驱动机制会严重影响扩展光束的性能,我们针对几种扫描波形进行了研究。然后通过扫描的CO_(2)激光束技术对扫描波形进行工程处理,以扩大均匀的加热区域,以拉伸和烧结二氧化硅纤维。给出了详细的推导。提出了一个简单的热模型,以说明扫描光束轮廓与锥度形状之间的关系。还比较了融合配置文件的各种扫描波形。实验确定了相应的扫描光束功率分布,这使我们能够确定CO_(2)激光聚变的精确功率密度条件。

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