Darabi Ali, Malekshahi Mazdak Rad
Department of Electrical Engineering, Faculty of Engineering, Razi University, Kermanshah, 67149, Iran.
Sci Rep. 2025 Jul 1;15(1):22436. doi: 10.1038/s41598-025-05569-x.
This paper presents a highly optimized metal-insulator-metal (MIM) filter designed for لrefractive index sensing applications, with dual cut-off bands at 1008 nm and 1348 nm. The filter's dimensions are optimized using the Particle Swarm Optimization (PSO) algorithm, ensuring maximum sensitivity and miniaturization. The Finite-Difference Time-Domain (FDTD) method is employed for simulations, while the Drude-Debye model accurately captures the dispersive dielectric properties of the metallic layers. Also, the optimized sensor exhibits high sensitivity, with values of 7504 nm/RIU for the first cut-off band and 8000 nm/RIU for the second, demonstrating enhanced responsiveness in the longer-wavelength range. The figure of merit (FOM) values of 250.13 (1/RIU) and 250 (1/RIU) for the two cut-off bands, respectively, along with detection limits of 0.0039 RIU and 0.004 RIU, further highlight the sensor's precision and reliability in detecting small refractive index changes. Furthermore, this dual-band MIM filter is well-suited for real-time refractive index detection, providing a compact, efficient design with excellent filtering capabilities. The integration of the PSO algorithm ensures optimal performance across both wavelength bands, making the sensor a promising candidate for applications in biosensing, chemical detection, and environmental monitoring. The high sensitivity, combined with the dual-band functionality, enables versatile sensing applications with enhanced precision.
本文介绍了一种为折射率传感应用而设计的高度优化的金属-绝缘体-金属(MIM)滤波器,其在1008纳米和1348纳米处有两个截止带。该滤波器的尺寸使用粒子群优化(PSO)算法进行了优化,以确保最大灵敏度和小型化。采用时域有限差分(FDTD)方法进行模拟,而德鲁德-德拜模型准确地捕捉了金属层的色散介电特性。此外,优化后的传感器具有高灵敏度,第一个截止带的值为7504纳米/RIU,第二个截止带的值为8000纳米/RIU,表明在长波长范围内响应性增强。两个截止带的品质因数(FOM)值分别为250.13(1/RIU)和250(1/RIU),以及检测限为0.0039 RIU和0.004 RIU,进一步突出了该传感器在检测小折射率变化时的精度和可靠性。此外,这种双波段MIM滤波器非常适合实时折射率检测,提供了一种紧凑、高效且具有出色滤波能力的设计。PSO算法的集成确保了在两个波长波段上的最佳性能,使该传感器成为生物传感、化学检测和环境监测应用中的一个有前途的候选者。高灵敏度与双波段功能相结合,实现了具有更高精度的多功能传感应用。