ACS Sens. 2019 Mar 22;4(3):571-577. doi: 10.1021/acssensors.8b00587. Epub 2019 Feb 25.
We demonstrate the chemical characterization of aerosol particles with on-chip spectroscopy using a photonic cavity enhanced silicon nitride (SiN) racetrack resonator-based sensor. The sensor operates over a broad and continuous wavelength range, showing cavity enhanced sensitivity at specific resonant wavelengths. Analysis of the relative change in the quality factor of the cavity resonances successfully yields the absorption spectrum of the aerosol particles deposited on the resonators. Detection of N-methyl aniline-based aerosol in the near infrared (NIR) range of 1500 to 1600 nm is demonstrated. Our aerosol sensor spectral data compares favorably with that from a commercial spectrometer, indicating good accuracy. The small size of the device is advantageous in remote, environmental, medical, and body-wearable sensing applications.
我们使用基于光子腔增强氮化硅(SiN)的赛道环形谐振器传感器的芯片光谱技术,对气溶胶颗粒进行化学特性分析。该传感器在很宽的连续波长范围内运行,在特定的谐振波长显示出腔增强灵敏度。通过分析腔谐振的品质因数的相对变化,成功得到沉积在谐振器上的气溶胶颗粒的吸收光谱。我们演示了在近红外(NIR)范围 1500 至 1600nm 内检测基于 N-甲基苯胺的气溶胶。我们的气溶胶传感器光谱数据与商用光谱仪的数据非常吻合,表明具有良好的准确性。该设备体积小,有利于远程、环境、医疗和可穿戴式传感应用。