Atsumi Yuki, Xu Dan-Xia, Delâge André, Schmid Jens H, Vachon Martin, Cheben Pavel, Janz Siegfried, Nishiyama Nobuhiko, Arai Shigehisa
National Research Council Canada, Ottawa, ON, Canada.
Opt Express. 2012 Nov 19;20(24):26969-77. doi: 10.1364/OE.20.026969.
For silicon wire based ring resonator biosensors, we investigate the simultaneous retrieval of changes in the fluidic refractive index ∆n(c) and surface adsorbed molecular film thickness ∆d(F). This can be achieved by monitoring the resonance shifts of the sensors operating in the TE and TM polarizations at the same time. Although this procedure is straightforward in principle, significant retrieval errors can be introduced due to deviations in the sensor waveguide cross-sections from their nominal values in the range commonly encountered for silicon photonic wire devices. We propose a method of determining the fabricated waveguide size using the group indices derived from measured free spectral range (FSR) of the resonators. We further demonstrate that using experimentally measured group index values, the waveguide size can be determined to accuracies of ± 2 nm in width and ± 1 nm in height. By using this procedure, ∆n(c) and ∆d(F) can be obtained to a precision of within 10% of the true values using optically measurable parameters, improving the retrieval accuracy by more than 3 times.
对于基于硅线的环形谐振器生物传感器,我们研究了同时获取流体折射率变化∆n(c)和表面吸附分子膜厚度变化∆d(F)的方法。这可以通过同时监测工作在TE和TM偏振态下的传感器的谐振频率偏移来实现。虽然该过程在原理上很简单,但由于硅光子线器件常见范围内传感器波导横截面与其标称值存在偏差,可能会引入显著的获取误差。我们提出了一种利用从谐振器测量的自由光谱范围(FSR)导出的群折射率来确定制造的波导尺寸的方法。我们进一步证明,使用实验测量的群折射率值,波导尺寸的宽度精度可达到±2nm,高度精度可达到±1nm。通过使用该方法,可以利用光学可测量参数以真值的10%以内的精度获得∆n(c)和∆d(F),将获取精度提高了3倍以上。