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首页> 外文期刊>IEEE Transactions on Nuclear Science >Radiation-Induced Effects on Fiber Bragg Gratings Inscribed in Highly Birefringent Photonic Crystal Fiber
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Radiation-Induced Effects on Fiber Bragg Gratings Inscribed in Highly Birefringent Photonic Crystal Fiber

机译:辐射对高度双折射光子晶体光纤中所含光纤布拉格光栅的影响

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摘要

The fiber Bragg gratings (FBGs) inside photonic crystal fibers (PCFs) having high fiber birefringence, such as in PCF with butterfly shape microstructure, are characterized by two Bragg peaks. The spectral distance between these two peaks is not affected by a change of temperature or by a longitudinally applied strain, but this spectral separation evolves when the sensor is subjected to a transversal strain. This makes such FBGs inscribed in highly birefringent PCFs very interesting for structural health monitoring of civil structures, as well as for operation in harsh environments such as the ones associated with the nuclear industry. In this paper, we monitor the radiation-induced Bragg wavelength shift (RI-BWS) of the punctual sensor and the radiation-induced attenuation in the fiber used for its inscription up to a dose of 1.5 MGy(SiO2). Even if we observe a RI-BWS for both Bragg peaks, the spectral distance between them only slightly evolves, of less than 10 pm. These gratings are then very promising sensors for the structural health monitoring of nuclear facilities.
机译:具有高光纤双折射的光子晶体光纤(PCF)内部的光纤布拉格光栅(FBG),例如在具有蝴蝶形微结构的PCF中,具有两个布拉格峰。这两个峰之间的光谱距离不受温度变化或纵向施加的应变的影响,但是当传感器承受横向应变时,这种光谱分离就会发展。这使得刻在高度双折射PCF中的此类FBG对于民用结构的结构健康监测以及在恶劣环境(例如与核工业相关的环境)中的操作非常有趣。在本文中,我们监测了点刻传感器的辐射诱发布拉格波长偏移(RI-BWS)以及用于其铭刻的光纤中辐射诱发的衰减,剂量最高为1.5 MGy(SiO2)。即使我们观察到两个布拉格峰的RI-BWS,它们之间的光谱距离也只有不到10 pm的微小变化。这些光栅是用于核设施结构健康监测的非常有前途的传感器。

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