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Distributed temperature sensing based on birefringence effect on transient Brillouin grating in a polarization-maintaining photonic crystal fiber

机译:基于双折射效应的保偏光子晶体光纤中瞬态布里渊光栅的分布式温度传感

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摘要

We demonstrate a time-domain distributed temperature sensing based on birefringence effect on transient Brillouin grating (TBG) in a polarization-maintaining photonic crystal fiber (PM-PCF), which uses two short pump pulses (2 ns) to excite a TBG and a long probe pulse (6 ns) to map the transient Brillouin grating spectrum (TBGS) associated with the birefringence. The 2 ns pump pulses defines a spatial resolution of 20 cm and a temperature measurement range of a few hundred degrees Celsius, and the long probe pulse provides a narrow TBGS with a temperature resolution of 0.07 deg C.
机译:我们展示了一种基于时域分布式温度感测,该感温基于偏振保持光子晶体光纤(PM-PCF)中的瞬态布里渊光栅(TBG)的双折射效应,它使用两个短泵浦脉冲(2 ns)激发TBG和一个长探测脉冲(6 ns),以绘制与双折射相关的瞬态布里渊光栅光谱(TBGS)。 2 ns的泵浦脉冲定义了20 cm的空间分辨率和几百摄氏度的温度测量范围,而长探测脉冲提供了具有0.07℃温度分辨率的窄TBGS。

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