Sinibaldi Alberto, Fieramosca Antonio, Rizzo Riccardo, Anopchenko Aleksei, Danz Norbert, Munzert Peter, Magistris Claudio, Barolo Claudia, Michelotti Francesco
Opt Lett. 2014 May 15;39(10):2947-50. doi: 10.1364/OL.39.002947.
We report on the design, fabrication, and characterization of optical sensors based on Bloch surface waves propagating at the truncation edge of one-dimensional photonic crystals. The sensors can be simultaneously operated in both a label-free mode, where small refractive index changes at the surface are detected, and a fluorescence mode, where the fluorescence from a novel heptamethyne dye label in the proximity of the surface is collected. The two modes operate in the near-infrared spectral range with the same configuration of the optical reading apparatus. The limit of detection is shown to be smaller than that of equivalent surface plasmon sensors and the fluorescence collection efficiency is such that it can be efficiently analyzed by the same camera sensor used for label-free operation.
我们报道了基于在一维光子晶体截断边缘传播的布洛赫表面波的光学传感器的设计、制造和特性。这些传感器可以同时在两种模式下运行:一种是无标记模式,用于检测表面微小的折射率变化;另一种是荧光模式,用于收集表面附近一种新型七甲川染料标记物发出的荧光。这两种模式在近红外光谱范围内以相同的光学读取装置配置运行。检测限表明小于等效表面等离子体传感器的检测限,并且荧光收集效率使得可以通过用于无标记操作的同一相机传感器进行有效分析。