Dandapat Krishnendu, Tripathi Saurabh Mani, Chinifooroshan Yasser, Bock Wojtek J, Mikulic Predrag
Opt Lett. 2016 Sep 15;41(18):4198-201. doi: 10.1364/OL.41.004198.
We propose and demonstrate a novel temperature-insensitive bio-sensor for accurate and quantitative detection of Escherichia coli (E. coli) bacteria in water. Surface sensitivity is maximized by operating the long-period fiber grating (LPFG) closest to its turnaround wavelength, and the temperature insensitivity is achieved by selectively exciting a pair of cladding modes with opposite dispersion characteristics. Our sensor shows a nominal temperature sensitivity of ∼1.25 pm/°C, which can be further reduced by properly adjusting the LPFG lengths, while maintaining a high refractive index sensitivity of 1929 nm/RIU. The overall length of the sensor is ∼3.6 cm, making it ideally suitable for bio-sensing applications. As an example, we also show the sensor's capability for reliable, quantitative detection of E. coli bacteria in water over a temperature fluctuation of room temperature to 40°C.
我们提出并展示了一种新型的温度不敏感生物传感器,用于准确、定量检测水中的大肠杆菌。通过在最接近其反转波长的条件下操作长周期光纤光栅(LPFG),使表面灵敏度最大化,并通过选择性激发一对具有相反色散特性的包层模式来实现温度不敏感性。我们的传感器显示出约1.25 pm/°C的标称温度灵敏度,通过适当调整LPFG长度可进一步降低该灵敏度,同时保持1929 nm/RIU的高折射率灵敏度。传感器的总长度约为3.6 cm,使其非常适合生物传感应用。例如,我们还展示了该传感器在室温至40°C的温度波动范围内可靠、定量检测水中大肠杆菌的能力。