Sophie Acheroy, Patrick Merken, Heidi Ottevaere, Thomas Geernaert, Hugo Thienpont, Marques Carlos A F, Webb David J, Peng Gang-Ding, Mergo Pawel, Francis Berghmans
Opt Lett. 2016 Jun 1;41(11):2517-20. doi: 10.1364/OL.41.002517.
We measure the radial profile of the photoelastic coefficient C(r) in single-mode polymer optical fibers (POFs), and we determine the evolution of C(r) after annealing the fibers at temperatures from 40°C to 80°C. We demonstrate that C(r) in the fibers drawn from a preform without specific thermal pre-treatment changes and converges to values between 1.2 and 1.6×10 Pa following annealing at 80°C. The annealed fibers display a smoothened radial profile of C(r) and a lowered residual birefringence. In contrast, the mean value of C(r) of the fiber drawn from a preform that has been pre-annealed remains constant after our annealing process and is significantly higher, i.e., 4×10 Pa. The annealing process decreases the residual birefringence to a lower extent as well. These measurements indicate the impact of annealing on the thermal stability of the photoelastic coefficient of POFs, which is an essential characteristic in view of developing POF-based thermo-mechanical sensors.
我们测量了单模聚合物光纤(POF)中光弹性系数C(r)的径向分布,并确定了在40°C至80°C温度下对光纤进行退火后C(r)的变化情况。我们证明,从未经特定热预处理的预制棒拉制的光纤中的C(r)在80°C退火后会发生变化,并收敛到1.2至1.6×10 Pa之间的值。退火后的光纤显示出C(r)的径向分布更加平滑,残余双折射降低。相比之下,从经过预退火的预制棒拉制的光纤的C(r)平均值在我们的退火过程后保持不变,且显著更高,即4×10 Pa。退火过程也在较小程度上降低了残余双折射。这些测量结果表明了退火对POF光弹性系数热稳定性的影响,这对于开发基于POF的热机械传感器而言是一个重要特性。