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Dopants concentration effects on the wavelength shift of long-period fiber gratings used as liquid level detectors

机译:掺杂剂浓度对用作液位探测器的长期光纤光栅波长偏移的影响

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Two liquid level sensors based on different long-period fiber gratings are proposed and compared. The long-period gratings have the same characteristics (length, grating period) but are fabricated in different optical fibers (photosensitive B-Ge codoped optical fibers with different dopants concentrations). The principle of this type of sensor is based on the refractive index sensitivity of long-period fiber gratings. By monitoring the resonant wavelength shifts of a given attenuation band, one can measure the immersed lengths of long-period fiber gratings and then the liquid level. The levels of two different solutions are measured. The maximum shift (7.69 nm) of the investigated resonance wavelength was observed in LPG1 (fabricated in Fibercore PS1250/1500). By controlling the fiber dopants concentrations one can improve the readouts of a fiber-optic liquid level sensor based on long-period fiber gratings.
机译:提出了两个基于不同的长周期光纤光栅的液位传感器。长周期光栅具有相同的特性(长度,光栅周期),但在不同的光纤中制造(具有不同掺杂剂浓度的光敏B-GE编排光纤)。这种类型的传感器的原理基于长期光纤光栅的折射率灵敏度。通过监测给定衰减带的谐振波长偏移,可以测量长期光纤光栅的浸入长度,然后测量液位。测量两种不同溶液的水平。在LPG1中观察到所研究的共振波长的最大换档(7.69nm)(在Fibercore PS1250 / 1500中制造)。通过控制光纤掺杂剂浓度,可以基于长周期光纤光栅改善光纤液位传感器的读出。

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