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Propagation mechanism of polymer optical fiber fuse

机译:聚合物光纤熔断器的传播机理

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摘要

A fiber fuse phenomenon in polymer optical fibers (POFs) has recently been observed, and its unique properties such as slow propagation, low threshold power density, and the formation of a black oscillatory damage curve, have been reported. However, its characterization is still insufficient to well understand the mechanism and to avoid the destruction of POFs. Here, we present detailed experimental and theoretical analyses of the POF fuse propagation. First, we clarify that the bright spot is not a plasma but an optical discharge, the temperature of which is ~3600 K. We then elucidate the reasons for the oscillation of the damage curve along with the formation of newly-observed gas bubbles as well as for the low threshold power density. We also present the idea that the POF fuse can potentially be exploited to offer a long photoelectric interaction length.
机译:最近已经观察到聚合物光纤(POF)中的光纤熔断现象,并且已经报道了其独特的特性,例如慢速传播,低阈值功率密度和黑色振荡损伤曲线的形成。但是,其表征仍然不足以充分理解其机理并避免破坏POF。在这里,我们介绍POF保险丝传播的详细实验和理论分析。首先,我们阐明亮点不是等离子体而是光放电,其温度约为3600 K,然后我们阐明了损坏曲线振荡以及新观察到的气泡形成的原因。至于低阈值功率密度。我们还提出了可以潜在地利用POF保险丝来提供较长的光电相互作用长度的想法。

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