Opt Lett. 2023 Feb 15;48(4):976-979. doi: 10.1364/OL.476445.
Plasmonic tilted fiber Bragg gratings (TFBGs) are very efficient for fast, accurate, and minimally invasive biosensing. Their transmitted amplitude spectrum is a dense comb of narrowband cladding mode resonances (full width at half maximum < 1 nm) that is usually demodulated using highly resolved (wavelength resolution < 10 pm) devices. This work demonstrates the possibility of using a coarsely resolved spectrometer (166 pm) to read out the amplitude spectrum of a gold-coated TFBG. A refined analysis of the spectral content has allowed us to develop signal processing that provides a refractometric sensitivity of 2656 nm/RIU. This is a fivefold improvement compared to previously reported read-out techniques. Biosensing has then been successfully implemented with gold-coated TFBGs implemented in reflection mode for the detection of insulin, with specific antibodies grafted on the gold surface. Our experimental work is a first step toward the industrialization of the FBG technology, as it opens the door to fast parallel biosensing, profiting from the multiple sensing channels (up to 64) of the interrogator and its high processing speed (repetition rate up to 3 kHz).
等离子体倾斜光纤布拉格光栅(TFBGs)非常适合快速、准确和微创生物传感。它们的传输幅度谱是密集的窄带包层模式共振梳(半最大值全宽<1nm),通常使用高分辨率(波长分辨率<10pm)设备进行解调。本工作证明了使用粗分辨率光谱仪(166pm)读取镀金 TFBG 幅度谱的可能性。对光谱内容的精细分析使我们能够开发出提供 2656nm/RIU 折射率灵敏度的信号处理方法。与以前报道的读出技术相比,这提高了五倍。然后,通过将金覆盖的 TFBG 用于反射模式来成功实现了生物传感,用于检测胰岛素,金表面接枝了特定的抗体。我们的实验工作是将 FBG 技术产业化的第一步,因为它为快速并行生物传感打开了大门,利用了多路复用器的多个传感通道(多达 64 个)及其高速处理速度(重复率高达 3kHz)。