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Twist Sensitivity of Cladding-Mode Resonances and Its Cross-Sensitivity to Strain and Temperature in a Mechanically Induced Long-Period Fiber Grating

机译:机械诱导的长周期光纤光栅中包层共振的扭转敏感性及其对应变和温度的交叉敏感性

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摘要

Twist sensitivity of cladding-mode resonances in a mechanically induced long-period fiber grating formed over a single-mode fiber is experimentally demonstrated and theoretically analyzed. Of the two usual cladding-mode resonances corresponding to LP11 and LP12, higher-order mode LP12 is more sensitive to twist in comparison with the lower-order mode LP11. The extent of down-shifting of resonant wavelengths depends on twist-induced circular birefringence and the modal field distribution of the cladding-modes inside the fiber. When the fiber is severely twisted to 3.5 rad/cm, a shift sensitivity is observed of 1 nm/(rad/cm) for the LP11 mode and 4.23 nm/(rad/cm) for the LP12 mode. The fiber breaks when the twist rate exceeds 3.5 rad/cm. In comparison with LP12, the LP11 resonance is almost independent of the axial strain variation with an ultra-low sensitivity of 0.18 pm/mu epsilon, and it is also almost insensitive to the temperature variation with a coefficient of 35 pm/degrees C. Forming the LP11 resonance far away from its cut-off wavelength, a widely tunable band-pass filter is also demonstrated with a very high twist sensitivity of 8.75 nm/(rad/cm) and negligible cross-sensitivity to strain and temperature. The experimental and theoretical results are very useful in selecting sensitive and stable cladding-mode resonances in the design of new mechanically induced long-period fiber gratings based torsion sensors and tunable band-pass filters.
机译:实验证明并从理论上分析了在单模光纤上形成的机械感应长周期光纤光栅中包层模谐振的扭转敏感性。在对应于LP11和LP12的两个通常的包层模式谐振中,与低阶模式LP11相比,高阶模式LP12对扭曲更敏感。共振波长下移的程度取决于扭曲引起的圆双折射和光纤内部包层模态的模态场分布。当光纤严重扭曲到3.5 rad / cm时,对于LP11模式,观察到的位移灵敏度为1 nm /(rad / cm),对于LP12模式,观察到为4.23 nm /(rad / cm)。当扭曲率超过3.5 rad / cm时,纤维会断裂。与LP12相比,LP11共振几乎不受轴向应变变化的影响,具有0.18 pm / mu epsilon的超低灵敏度,并且对温度变化也几乎不敏感,其系数为35 pm /°C。 LP11谐振远离其截止波长,还展示了一种可广泛调谐的带通滤波器,具有8.75 nm /(rad / cm)的极高扭曲灵敏度,并且对应变和温度的交叉灵敏度可忽略不计。实验和理论结果在选择基于扭力传感器和可调带通滤波器的新型机械感应长周期光纤光栅的设计中,对于选择敏感且稳定的包层模式谐振非常有用。

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