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Distributed feedback lasers based on perylenediimide dyes for label-free refractive index sensing

机译:基于per二酰亚胺染料的分布式反馈激光器,用于无标签折射率传感

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摘要

The refractive index sensing capabilitity of distributed feedback (DFB) lasers based on highly photostable (under ambient conditions) perylenediimide-based active films, are reported. The sensor bulk sensitivity is determined from changes in the laser emission wavelength upon exposure to different liquids. The role of the active film thickness (hf) on the sensor sensitivity and on the laser parameters is studied. Sensors based on very thin films (hf = 160 nm) show the highest sensitivities, but their laser thresholds are relatively high and their operational durabilities moderate. The use of thicker films (hf = 850 nm) allows reducing the laser threshold and increasing the durability by two orders of magnitude. In this case, a higher sensitivity is achieved when the sensor operates at the wavelength corresponding to the first-order TE1 mode, instead of at the TE0 one. Finally, it is also shown that the inclusion of a high refractive index TiO2 layer on top of the sensor structure improves the sensitivity by around two times.
机译:报道了基于高光稳定性(在环境条件下)基于ylene二酰亚胺的活性膜的分布式反馈(DFB)激光器的折射率感应能力。根据暴露于不同液体时激光发射波长的变化来确定传感器的整体灵敏度。研究了有源膜厚度(hf)对传感器灵敏度和激光参数的作用。基于非常薄的薄膜(hf = 160 nm)的传感器显示出最高的灵敏度,但是它们的激光阈值相对较高,并且其运行耐久性适中。使用较厚的薄膜(hf = 850 nm)可以降低激光阈值,并将耐用性提高两个数量级。在这种情况下,当传感器以对应于一阶TE1模式的波长而不是TE0模式工作时,可以获得更高的灵敏度。最后,还显示出在传感器结构顶部包含高折射率TiO2层可将灵敏度提高大约两倍。

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