Electromagnetism and Telecommunication Department, University of Mons (UMONS), Boulevard Dolez, 31, 7000 Mons, Belgium.
Sci Rep. 2016 Nov 30;6:38042. doi: 10.1038/srep38042.
New dual temperature and strain sensor has been designed using eccentric second-order fiber Bragg gratings produced in standard single-mode optical fiber by point-by-point direct writing technique with tight focusing of 800 nm femtosecond laser pulses. With thin gold coating at the grating location, we experimentally show that such gratings exhibit a transmitted amplitude spectrum composed by the Bragg and cladding modes resonances that extend in a wide spectral range exceeding one octave. An overlapping of the first order and second order spectrum is then observed. High-order cladding modes belonging to the first order Bragg resonance coupling are close to the second order Bragg resonance, they show a negative axial strain sensitivity (-0.55 pm/με) compared to the Bragg resonance (1.20 pm/με) and the same temperature sensitivity (10.6 pm/°C). With this well conditioned system, temperature and strain can be determined independently with high sensitivity, in a wavelength range limited to a few nanometers.
已经设计出一种新的双温度和应变传感器,该传感器使用通过点写入技术在标准单模光纤中制作的偏心二阶光纤布拉格光栅,并采用 800nm 飞秒激光脉冲进行紧密聚焦。在光栅位置涂有薄金层,我们通过实验表明,这种光栅具有由布拉格和包层模共振组成的传输幅度谱,该谱在超过一个倍频程的宽光谱范围内扩展。然后观察到一阶和二阶光谱的重叠。属于一阶布拉格共振耦合的高阶包层模靠近二阶布拉格共振,与布拉格共振(1.20pm/με)相比,它们表现出负的轴向应变灵敏度(-0.55pm/με),并且具有相同的温度灵敏度(10.6pm/°C)。在这种条件良好的系统中,可以在波长范围限于几个纳米的情况下,以高灵敏度独立地确定温度和应变。