College of Information Engineering, Zhejiang University of Technology, Hangzhou 310023, China.
Key Lab of Quantum Information, University of Science and Technology of China, Hefei 230026, China.
Sensors (Basel). 2020 Jan 28;20(3):709. doi: 10.3390/s20030709.
A universal multi-parameter sensing scheme based on a self-interference micro-ring resonator (SIMRR) is proposed. Benefit from the special intensity sensing mechanism, the SIMRR allows multimode sensing in a wide range of wavelengths but immune from frequency noise. To process the multiple mode spectra that are dependent on multiple parameters, we adopt the machine learning algorithm instead of massive asymptotic solutions of resonators. Employing the proposed multi-mode sensing approach, a two-parameter SIMRR sensor is designed. Assuming that two gases have different wavelength dependence of refractive indices, the feasibility and effectiveness of the two-parameter sensing strategy are verified numerically. Moreover, the dependence of parameter estimation accuracy on the laser intensity noises is also investigated. The numerical results indicate that our scheme of multi-parameter sensing in a multimode SIMRR holds great potential for practical high-sensitive sensing platforms compared with the single-mode sensing based on whispering gallery mode (WGM) resonators.
提出了一种基于自干涉微环谐振器(SIMRR)的通用多参数传感方案。得益于特殊的强度传感机制,SIMRR 允许在宽波长范围内进行多模传感,而不受频率噪声的影响。为了处理依赖于多个参数的多个模式光谱,我们采用机器学习算法而不是大量的谐振器渐近解。采用所提出的多模传感方法,设计了一种双参数 SIMRR 传感器。假设两种气体的折射率具有不同的波长依赖性,数值验证了双参数传感策略的可行性和有效性。此外,还研究了参数估计精度对激光强度噪声的依赖性。数值结果表明,与基于 whispering gallery 模式(WGM)谐振器的单模传感相比,多模 SIMRR 中的多参数传感方案在实际高灵敏度传感平台中具有很大的潜力。