De-Jun Feng, Guan-Xiu Liu, Xi-Lu Liu, Ming-Shun Jiang, Qing-Mei Sui
Appl Opt. 2014 Apr 1;53(10):2007-11. doi: 10.1364/AO.53.002007.
This work reports a refractive index sensor made of plastic optical fiber (POF) with tapered structure. Transmission loss is measured when the external environment's refractive index changes from 1.33 to 1.41. Three wavelengths (532, 633, and 780 nm) are used to evaluate the sensitivity of the sensor, and results indicate that 633 nm is the best sensing wavelength due to the increased levels of sensitivity achieved at this wavelength. A biconical sensing structure is designed to enhance the sensitivity of the sensor. A sensitivity of 950 μW/RIU at 633 nm is obtained for a biconical sensing structure when launched power is 1 mW. Due to its sensitivity to the refractive index and simple construction, POF with tapered structure has potential applications in the biosensing field.
这项工作报道了一种由具有锥形结构的塑料光纤(POF)制成的折射率传感器。当外部环境的折射率从1.33变化到1.41时,测量传输损耗。使用三个波长(532、633和780 nm)来评估传感器的灵敏度,结果表明633 nm是最佳传感波长,因为在此波长下实现了更高的灵敏度水平。设计了一种双锥形传感结构以提高传感器的灵敏度。当发射功率为1 mW时,双锥形传感结构在633 nm处获得的灵敏度为950 μW/RIU。由于其对折射率的敏感性和结构简单,具有锥形结构的塑料光纤在生物传感领域具有潜在的应用。