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Incorporation of vanadium oxide films in optical fibers for temperature sensing and optical switching applications

机译:在光纤中掺入氧化钒薄膜,以用于温度传感和光交换应用

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Fiber optic temperature sensors were fabricated by depositing vanadium oxide thin films on the tips of optical fibers, and by incorporating vanadium oxide materials into the core of optical fibers. It was found that the properties of the initially amorphous vanadium oxide can be controllably converted to those of crystalline VOx compounds via the plasma arc of a fiber fusion splicer. These crystalline VOx compounds can then be over-coated with SiO2, and subsequently fused with another fiber to form an in-line fiber optic sensor. It was found that a well defined optical absorption edge was formed when the vanadium oxide (VOx) thin films were annealed using the plasma arc of a fusion splicer, suggesting the formation of crystalline VOx. Moreover, it was observed that the spectral position of this absorption edge varied with temperature in a reproducible way. The optical fiber devices described in this paper could also be employed for optical switching applications. Based on the spectral position of the band edge and the Raman spectra of the VOx films, deposited on the fiber optic tips, it was found that these annealed VOx films contained a mixture of different phases of vanadium oxide (VOx), in particular V2O5 and VO2. Furthermore, similar in-line optical fiber switches, based only on the insulator to metal phase transitions of VO2, can be fabricated by following the techniques described in this paper.
机译:光纤温度传感器的制造方法是在光纤尖端上沉积氧化钒薄膜,并将氧化钒材料掺入光纤芯中。发现通过纤维熔接机的等离子弧可将初始无定形氧化钒的性质可控制地转变成结晶VOx化合物的性质。然后可以用SiO2覆盖这些结晶的VOx化合物,然后与另一根光纤融合以形成在线光纤传感器。发现当使用熔接机的等离子弧对钒氧化物(VOx)薄膜进行退火时,形成了清晰的光吸收边缘,表明形成了晶体VOx。而且,观察到该吸收边缘的光谱位置以可再现的方式随温度变化。本文所述的光纤设备也可用于光交换应用。根据带边缘的光谱位置和沉积在光纤尖端上的VOx薄膜的拉曼光谱,发现这些退火的VOx薄膜包含不同相的钒氧化物(VOx)的混合物,尤其是V2O5和VO2。此外,仅根据VO2的绝缘体到金属的相变,就可以通过遵循本文所述的技术来制造类似的同轴光纤开关。

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