Ufa University of Science and Technology, 32, Z. Validi St., Ufa 450076, Russia.
Kazan National Research Technical University named after A. N. Tupolev-KAI (KNRTU-KAI), 10, Karl Marx Street, Kazan 420111, Russia.
Sensors (Basel). 2022 Dec 6;22(23):9553. doi: 10.3390/s22239553.
The design of a refractometric sensing system for liquids analysis with a sensor and the scheme for its intensity interrogation combined on a single photonic integrated circuit (PIC) is proposed. A racetrack microring resonator with a channel for the analyzed liquid formed on the top is used as a sensor, and another microring resonator with a lower Q-factor is utilized to detect the change in the resonant wavelength of the sensor. As a measurement result, the optical power at its drop port is detected in comparison with the sum of the powers at the through and drop ports. Simulations showed the possibility of registering a change in the analyte refractive index with a sensitivity of 110 nm per refractive index unit. The proposed scheme was analyzed with a broadband source, as well as a source based on an optoelectronic oscillator using an optical phase modulator. The second case showed the fundamental possibility of implementing an intensity interrogator on a PIC using an external typical single-mode laser as a source. Meanwhile, additional simulations demonstrated an increased system sensitivity compared to the conventional interrogation scheme with a broadband or tunable light source. The proposed approach provides the opportunity to increase the integration level of a sensing device, significantly reducing its cost, power consumption, and dimensions.
提出了一种将液体分析折射传感系统的传感器与单个光子集成电路 (PIC) 上的强度询问方案相结合的设计方案。传感器采用顶部形成有分析液通道的赛道型微环谐振器,而另一个 Q 因数较低的微环谐振器则用于检测传感器的谐振波长变化。作为测量结果,与直通端口和分支端口的功率总和相比,检测分支端口的光功率。仿真结果表明,该传感器具有 110nm/RIU 的折射率灵敏度,可用于检测折射率的变化。该方案使用宽带光源以及基于电光振荡器和光相位调制器的光源进行了分析。第二种情况表明,使用外部典型的单模激光器作为光源,在 PIC 上实现强度询问器具有基本的可能性。同时,与使用宽带或可调光源的传统询问方案相比,额外的仿真表明系统灵敏度有所提高。该方法提供了提高传感设备集成度的机会,可显著降低其成本、功耗和尺寸。