Sharif Vahid, Saberi Hana, Pakarzadeh Hassan
Department of Electrical, Electronic and Communication Engineering, Public University of Navarra, Universidad Pública de Navarra), Campus de Arrosadia, Pamplona, Navarra, 31006, Spain.
Department of Physics, Shiraz university of technology, Shiraz, Iran.
Sci Rep. 2025 Jan 17;15(1):2268. doi: 10.1038/s41598-024-82704-0.
A novel helically twisted photonic crystal fiber (PCF) is designed and proposed for sensing toxic gases with refractive indices ranging from 1.00 to 1.08. The PCF consists of twelve hollow pipes arranged circularly around the hollow core to support THz radiation propagation. Low-loss polymer Topas is used as the background material of cladding. The fiber is twisted 360° over 50 cm to enhance anti-resonance in the THz region. The fundamental LP mode is analyzed using the finite-difference eigenmode (FDE) method. The sensor operates across four frequency bands (0.2 to 3.0 THz) with minimal transmission loss (~ 10⁻⁴ 1/cm). Key parameters such as refractive index sensitivity, relative sensitivity, resolution, and figure of merit (FOM) are evaluated. The average refractive index sensitivities are 1450, 2250, 3000, and 2550 for Bands 1 to 4, respectively, with 100% relative sensitivity across all bands. The sensor detects refractive index changes as small as 10⁻⁴. The FOM, defined as the inverse of the full width at half maximum, exceeds 30 1/RIU, reaching up to 250 1/RIU due to sharp resonance peaks. Compared to other THz sensors, this design offers enhanced performance in sensing gases like SOx, NOx, and CO, while maintaining a simple structure.
设计并提出了一种新型螺旋扭曲光子晶体光纤(PCF),用于传感折射率范围为1.00至1.08的有毒气体。该PCF由围绕空心核心呈圆形排列的十二根空心管组成,以支持太赫兹辐射传播。低损耗聚合物Topas用作包层的背景材料。光纤在50厘米长度内扭转360°,以增强太赫兹区域的反共振。使用有限差分本征模(FDE)方法分析基模LP。该传感器在四个频段(0.2至3.0太赫兹)工作,传输损耗最小(约10⁻⁴ 1/厘米)。评估了诸如折射率灵敏度、相对灵敏度、分辨率和品质因数(FOM)等关键参数。对于频段1至4,平均折射率灵敏度分别为1450、2250、3000和2550,所有频段的相对灵敏度均为100%。该传感器能检测到低至10⁻⁴的折射率变化。FOM定义为半高全宽的倒数,超过30 1/RIU,由于尖锐的共振峰,可达250 1/RIU。与其他太赫兹传感器相比,该设计在传感SOx、NOx和CO等气体方面具有更高的性能,同时保持结构简单。