Liu Dejun, Wu Qiang, Han Wei, Wei Fangfang, Ling Fengzi, Kumar Rahul, Mallik Arun Kumar, Tian Ke, Shen Changyu, Farrell Gerald, Semenova Yuliya, Wang Pengfei
Opt Express. 2019 Jul 8;27(14):19726-19736. doi: 10.1364/OE.27.019726.
Optical fiber based twist sensors usually suffer from high cross sensitivity to strain. Here we report a strain independent twist sensor based on an uneven platinum coated hollow core fiber (HCF) structure. The sensor is fabricated by splicing a section of ~4.5-mm long HCF between two standard single mode fibers, followed by a sputter-coating of a very thin layer of platinum on both sides of the HCF surface. Experimental results demonstrate that twist angles can be measured by monitoring the strength change of transmission spectral dip. The sensor's cross sensitivity to strain is investigated before and after coating with platinum. It is found that by coating a platinum layer of ~9 nm on the HCF surface, the sensor's cross sensitivity to strain is significantly decreased with over two orders of magnitude less than that of the uncoated sensor sample. The lowest strain sensitivity of ~2.32×10 dB/𝜇𝛆 has been experimentally achieved, which is to the best of our knowledge, the lowest cross sensitivity to strain reported to date for optical fiber sensors based on intensity modulation. In addition, the proposed sensor is capable of simultaneous measurement of strain and twist angle by monitoring the wavelength shift and dip strength variation of a single spectral dip. In the experiment, strain and twist angle sensitivities of 0.61 pm/𝜇𝛆 and 0.10 dB/° have been achieved. Moreover, the proposed sensor offers advantages of ease of fabrication, miniature size, and a good repeatability of measurement.
基于光纤的扭转传感器通常对应变具有较高的交叉敏感性。在此,我们报道一种基于不均匀镀铂空心光纤(HCF)结构的应变无关型扭转传感器。该传感器通过在两根标准单模光纤之间熔接一段约4.5毫米长的HCF制成,随后在HCF表面两侧溅射涂覆一层非常薄的铂层。实验结果表明,可以通过监测传输光谱凹陷的强度变化来测量扭转角。在镀铂前后研究了该传感器对应变的交叉敏感性。发现通过在HCF表面涂覆一层约9纳米的铂层,传感器对应变的交叉敏感性显著降低,比未涂覆的传感器样品低两个数量级以上。实验实现了最低约2.32×10 dB/με的应变敏感性,据我们所知,这是迄今为止基于强度调制的光纤传感器报道的对应变最低的交叉敏感性。此外,所提出的传感器能够通过监测单个光谱凹陷的波长偏移和凹陷强度变化同时测量应变和扭转角。在实验中,实现了0.61 pm/με的应变敏感性和0.10 dB/°的扭转角敏感性。而且,所提出的传感器具有易于制造、尺寸小巧和测量重复性好的优点。