Hu Jianyang, Zhou Dong, Su Yueming, Liu Shuangqiang, Miao Peixian, Shi Yanchao, Sun Weimin, Liu Yongjun
Opt Lett. 2020 Sep 15;45(18):5209-5212. doi: 10.1364/OL.402473.
This Letter proposes and demonstrates a novel, miniature fiber-tip temperature sensor with a tapered hollow capillary tube (HCT) filled with glycerin and dye-doped cholesteric liquid crystal (CLC). The function of glycerin is to provide a surface anchoring force to control the uniform orientation of CLC molecules, so that the CLC in the tapered HCT can be considered as a mirrorless photonic bandgap (PBG) microcavity. An unambiguously identifiable PBG mode single peak appears in the emission spectra of the sensor. The CLC-based fiber-tip temperature sensor has a temperature sensitivity of -9.167/, and the figure of merit can reach 67.4. This sensor offers key features and advantages, including compactness, unambiguous identifiability, and biocompatibility, which can satisfy requirements of temperature measurement in various temperature sensing application fields and has great potential for biochemical detection at cell level. In addition, the CLC was integrated into the optical fiber terminal, and the PBG mode is excited, collected and transmitted by the multimode fiber coupler, which is reported for the first time, to the best of our knowledge.
本文提出并展示了一种新型的微型光纤尖端温度传感器,该传感器具有一个填充有甘油和染料掺杂胆甾相液晶(CLC)的锥形空心毛细管(HCT)。甘油的作用是提供表面锚定力,以控制CLC分子的均匀取向,从而使锥形HCT中的CLC可被视为无镜光子带隙(PBG)微腔。在传感器的发射光谱中出现了一个明确可识别的PBG模式单峰。基于CLC的光纤尖端温度传感器的温度灵敏度为-9.167/,品质因数可达67.4。该传感器具有紧凑性、明确可识别性和生物相容性等关键特性和优势,能够满足各种温度传感应用领域的温度测量要求,在细胞水平的生化检测方面具有巨大潜力。此外,据我们所知,首次报道了将CLC集成到光纤终端,并通过多模光纤耦合器激发、收集和传输PBG模式。