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首页> 外文期刊>Journal of nanoscience and nanotechnology >Simultaneous Measurement of Bending and Temperature Using Long-Period Fiber Grating Inscribed on Polarization-Maintaining Fiber with CO2 Laser
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Simultaneous Measurement of Bending and Temperature Using Long-Period Fiber Grating Inscribed on Polarization-Maintaining Fiber with CO2 Laser

机译:使用CO2激光器在偏振 - 保持纤维上铭刻偏振纤维的长周期光纤测量弯曲和温度的同时测量

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Here we report on the simultaneous measurement of bending and temperature, carried out using a long-period fiber grating (LPFG) inscribed on polarization-maintaining fiber (PMF) with a CO2 laser at similar to 10.6 mu m. An LPFG written on PMF, referred to as a PM-LPFG, has an input-polarization-dependent resonance dip, and two separated resonance dips, designated as Dips A and B, are obtained with respect to orthogonal input polarization. At the resonance wavelengths of Dips A and B, the core mode is coupled into two different cladding modes that have different bending and temperature sensitivities. The fabricated PM-LPFG whose grating period and length are similar to 505 mu m and similar to 14.65 mm, respectively, has two resonance wavelengths, i.e., lambda(A) = similar to 1479.98 nm and lambda(B) = similar to 1568.78 nm, measured with respect to two orthogonal input polarization states. The bending sensitivities of this PM-LPFG were measured as similar to 22.23 and similar to 33.38 nm/m(-1) (adjusted R-2 values: similar to 0.9916 and similar to 0.9810) at lambda(A) and lambda(B), respectively, in a curvature range of 1.41-2.30 m(-1). The temperature sensitivities of the PM-LPFG were measured as similar to 0.132 and similar to 0.039 nm/degrees C (adjusted R-2 values: similar to 0.9929 and similar to 0.9980) at lambda(A) and lambda(B), respectively, in a temperature range of 30-90 degrees C. These linear bending and temperature responses of the PM-LPFG at two different resonance wavelengths enable simultaneous measurement of bending and temperature variations applied to the PM-LPFG.
机译:在这里,我们报告使用长期纤维光栅(LPFG)进行的弯曲和温度的同时测量,其在偏振 - 保持纤维(PMF)上,同样地与10.6μm类似的CO2激光器。在PMF上写入PMF的LPFG称为PM-LPFG,具有输入极化相关的谐振滴,并且相对于正交输入极化获得指定为倾角A和B的两个分离的共振次数。在倾角A和B的共振波长处,核心模式耦合到具有不同弯曲和温度敏感性的两种不同的包层模式。其光栅周期和长度的制造的PM-LPFG类似于505μm且类似于14.65mm,具有两个共振波长,即Lambda(a)=类似于1479.98nm和lambda(b)=类似于1568.78nm ,相对于两个正交输入偏振态测量。测量该PM-LPFG的弯曲敏感性与22.23相似,类似于33.38nm / m(-1)(调节的R-2值:类似于λ(a)和lambda(b)的0.9916)分别在1.41-2.30 m(-1)的曲率范围内。测量PM-LPFG的温度敏感性与0.132相似,类似于0.039nm /℃(调节的R-2值:类似于0.9929,类似于0.9980),分别在λ(a)和lambda(b)中,在30-90摄氏度的温度范围内。这些线性弯曲和PM-LPFG的温度响应在两个不同的共振波长下,可以同时测量施加到PM-LPFG的弯曲和温度变化。

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