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一种用于生物医学传感应用的基于折射率的双波段超材料传感器设计与分析

A Refractive Index-Based Dual-Band Metamaterial Sensor Design and Analysis for Biomedical Sensing Applications.

作者信息

Darsi Lakshmi, Rana Goutam

机构信息

Department of Electronics and Communication Engineering, SRM University, Guntur 522240, Andhra Pradesh, India.

出版信息

Sensors (Basel). 2025 Jan 3;25(1):232. doi: 10.3390/s25010232.

Abstract

We propose herein a metamaterial (MM) dual-band THz sensor for various biomedical sensing applications. An MM is a material engineered to have a particular property that is rarely observed in naturally occurring materials with an aperiodic subwavelength arrangement. MM properties across a wide range of frequencies, like high sensitivity and quality factors, remain challenging to obtain. MM-based sensors are useful for the in vitro, non-destructive testing (NDT) of samples. The challenge lies in designing a narrow band resonator such that higher sensitivities can be achieved, which in turn allow for the sensing of ultra-low quantities. We propose a compact structure, consisting of a basic single-square split ring resonator (SRR) with an integrated inverted Z-shaped unit cell. The projected structure provides dual-band frequencies resonating at 0.75 THz and 1.01 THz with unity absorption at resonant peaks. The proposed structure exhibits a narrow bandwidth of 0.022 THz and 0.036 THz at resonances. The resonant frequency exhibits a shift in response to variations in the refractive index of the surrounding medium. This enables the detection of various biomolecules, including cancer cells, glucose, HIV-1, and M13 viruses. The refractive index varies between 1.35 and 1.40. Furthermore, the sensor is characterized by its performance, with an average sensitivity of 2.075 THz and a quality factor of 24.35, making it suitable for various biomedical sensing applications.

摘要

我们在此提出一种用于各种生物医学传感应用的超材料(MM)双频太赫兹传感器。超材料是一种经过设计的材料,具有在非周期性亚波长排列的天然材料中很少观察到的特定属性。在很宽的频率范围内获得超材料的特性,如高灵敏度和品质因数,仍然具有挑战性。基于超材料的传感器可用于样品的体外无损检测(NDT)。挑战在于设计一种窄带谐振器,以便能够实现更高的灵敏度,进而能够检测超低含量的物质。我们提出了一种紧凑结构,它由一个基本的单正方形分裂环谐振器(SRR)和一个集成的倒Z形单元组成。所设计的结构提供了在0.75太赫兹和1.01太赫兹处谐振的双频,谐振峰处的吸收率为1。所提出的结构在谐振时显示出0.022太赫兹和0.036太赫兹的窄带宽。谐振频率会随着周围介质折射率的变化而发生偏移。这使得能够检测各种生物分子,包括癌细胞、葡萄糖、HIV - 1和M13病毒。折射率在1.35到1.40之间变化。此外,该传感器的性能特点是平均灵敏度为2.075太赫兹,品质因数为24.35,使其适用于各种生物医学传感应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81b0/11723037/0ecba5091a91/sensors-25-00232-g001.jpg

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