Pérez-Armenta Carlos, Ortega-Moñux Alejandro, Čtyroký Jiří, Cheben Pavel, Schmid Jens H, Halir Robert, Molina-Fernández Íñigo, Wangüemert-Pérez J Gonzalo
Opt Express. 2020 Dec 7;28(25):37971-37985. doi: 10.1364/OE.404364.
Subwavelength grating (SWG) waveguides have been shown to provide enhanced light-matter interaction resulting in superior sensitivity in integrated photonics sensors. Narrowband integrated optical filters can be made by combining SWG waveguides with evanescently coupled Bragg gratings. In this paper, we assess the sensing capabilities of this novel filtering component with rigorous electromagnetic simulations. Our design is optimized for an operating wavelength of 1310 nm to benefit from lower water absorption and achieve narrower bandwidths than at the conventional wavelength of 1550 nm. Results show that the sensor achieves a sensitivity of 507 nm/RIU and a quality factor of 4.9 × 10, over a large dynamic range circumventing the free spectral range limit of conventional devices. Furthermore, the intrinsic limit of detection, 5.1 × 10 RIU constitutes a 10-fold enhancement compared to state-of-the-art resonant waveguide sensors.
亚波长光栅(SWG)波导已被证明能够提供增强的光与物质相互作用,从而在集成光子传感器中实现卓越的灵敏度。通过将SWG波导与倏逝耦合布拉格光栅相结合,可以制造出窄带集成光学滤波器。在本文中,我们通过严格的电磁模拟评估了这种新型滤波组件的传感能力。我们的设计针对1310 nm的工作波长进行了优化,以受益于较低的水吸收率,并实现比传统的1550 nm波长更窄的带宽。结果表明,该传感器在较大的动态范围内实现了507 nm/RIU的灵敏度和4.9×10的品质因数,规避了传统器件的自由光谱范围限制。此外,5.1×10 RIU的固有检测限相比最先进的谐振波导传感器提高了10倍。