Dai Daoxin
Centre for Optical and Electromagnetic Research, State Key Laboratory for Modern Optical Instrumentation, East Building No.5, Zijingang Campus, Zhejiang University, Hangzhou 310058, China. dxdai@.zju.edu.cn
Opt Express. 2009 Dec 21;17(26):23817-22. doi: 10.1364/OE.17.023817.
A digital optical sensor based on two cascaded rings with different free spectral ranges (FSRs) is proposed. Because of their different FSRs, the major peak of the spectral response from the output port shifts digitally when the effective refractive index of ring #1 changes. And the shift of the major peak is equal to multiple FSRs of ring #2. Since it is easy to design a ring with a FSR of nanometers, the present digital optical sensor shows an ultra-high sensitivity (at the order of 10(5) nm/RIU) which is over two orders higher than that of a regular single-ring sensor. By using the present digital optical sensor, it becomes convenient to use an integrated optical micro-spectrometer (even with a low resolution) to monitor the peak shift of the spectral response. Therefore, it is promising to realize a low-cost and portable highly-sensitive optical sensor system on a single chip.
提出了一种基于两个具有不同自由光谱范围(FSR)的级联环的数字光学传感器。由于它们的FSR不同,当环1的有效折射率发生变化时,来自输出端口的光谱响应的主峰数字式地移动。并且主峰的移动量等于环2的多个FSR。由于设计一个具有纳米级FSR的环很容易,目前的数字光学传感器显示出超高灵敏度(约为10(5) nm/RIU),比常规的单环传感器高出两个数量级以上。通过使用目前的数字光学传感器,使用集成光学微型光谱仪(即使分辨率较低)来监测光谱响应的峰移变得方便。因此,有望在单个芯片上实现低成本、便携式的高灵敏度光学传感器系统。