2025

Oral cancer biosensor using ternary photonic crystal and parity time symmetry.

Scientific reports Zaky ZA, Hennache A, Zhaketov VD
阅读原文 PDF DOI PubMed

组成图示

示意图生成中

传感器类型

检测对象

检测原理

检测灵敏度

效应效果

传感器的构成

中文摘要

英文摘要

This study explores the theoretical design of a one-dimensional ternary photonic crystal with parity-time (PT) symmetry for terahertz-based optical biosensing of oral cancer. The proposed structure follows the arrangement (ABA)N/D/(ABA)N, where layers A (doped SiO2) and B (Si) form the periodic lattice, and D serves as a defect layer containing either healthy or cancerous oral cells. Transmission spectra were analyzed under varying PT-symmetry parameter (Q) conditions, revealing distinct defect modes within the photonic bandgap that exhibit strong dependence on the optical properties of the biological tissue. Comparative analysis between healthy and malignant cells showed notable variations in transmission amplitude and peak positions, with peak transmittance reaching 7.41 × 1010 at optimized Q-values. The system demonstrated exceptional sensitivity, achieving a maximum transmittance-based sensitivity of 2.1 × 10¹² %/RIU, highlighting its capability to detect minute refractive index changes. These results indicate that the PT-symmetric photonic crystal structure provides a highly sensitive, non-invasive, and label-free optical platform for early and precise oral cancer detection in the terahertz regime.

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