Sadeque Md Golam, Tithi Suchana Aktar, Islam Md Safiul, Ferdous A H M Iftekharul, Kundu Diponkar, Hasan Md Galib, Sarker Md Zakirul Islam
Department of Electrical and Electronic Engineering, Pabna University of Science and Technology, Pabna, Bangladesh.
Department of Electrical and Electronic Engineering, Khulna University of Engineering and Technology, Khulna, Bangladesh.
PLoS One. 2025 Mar 28;20(3):e0320805. doi: 10.1371/journal.pone.0320805. eCollection 2025.
Terahertz (THz) spectroscopy is becoming a powerful technique for non-destructive, label-free chemical sensing with applications ranging from medicinal research to security screening. Enhancing THz spectroscopy's sensitivity and selectivity is crucial to maximizing its potential. In this work, we offer a novel optical fiber design, square shape core PCF that is tailored to exploit improved optical features at exterior in the THz region. This analysis suggests that a square shape and three layers with square air apertures for the cladding and core would be ideal. The mathematical analysis is carried out at THz wave dissemination utilizing FEM and boundaries circumstance of the Perfectly Matched Layer. Using the simulation method, the constructed square PCF sensor achieves very high relative sensitivity (94.45%, 94.80%) at 2 THz for two compounds: ethanol (n = 1.354), and benzene (n = 1.36). On the other hand, the low confinement loss (CL) values for the same two compounds at 2 THz are 1.17 × 10-05 dB/m, and 1.32 × 1 0-05 dB/m, in that order. We also looked at the potential applications of this special fiber in a variety of fields, including environmental monitoring, chemical sensing, and biomedical diagnostics. The square PCF with square core has hitherto unexplored opportunities for the development of extremely selective and sensitive THz spectroscopic devices with important social consequences in domain of THz perception of chemicals.
太赫兹(THz)光谱正成为一种强大的无损、无标记化学传感技术,其应用范围涵盖医学研究到安全筛查等领域。提高太赫兹光谱的灵敏度和选择性对于充分发挥其潜力至关重要。在这项工作中,我们提出了一种新颖的光纤设计,即方形纤芯光子晶体光纤,其经过特殊设计以利用太赫兹区域外部的改进光学特性。该分析表明,方形以及包层和纤芯具有方形空气孔的三层结构将是理想的。利用有限元法(FEM)和完全匹配层的边界条件对太赫兹波传播进行了数学分析。通过模拟方法,所构建的方形光子晶体光纤传感器对于乙醇(n = 1.354)和苯(n = 1.36)这两种化合物在2太赫兹时实现了非常高的相对灵敏度(分别为94.45%和94.80%)。另一方面,这两种化合物在2太赫兹时的低限制损耗(CL)值分别为1.17×10⁻⁰⁵ dB/m和1.32×10⁻⁰⁵ dB/m。我们还研究了这种特殊光纤在环境监测、化学传感和生物医学诊断等多个领域的潜在应用。具有方形纤芯的方形光子晶体光纤在开发极具选择性和灵敏度的太赫兹光谱设备方面具有迄今尚未探索的机会,这在太赫兹化学感知领域具有重要的社会意义。