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用于太赫兹频率乳腺癌检测的石墨烯增强十角形贴片天线。

Graphene-enhanced decagonal patch antenna for terahertz frequency operation in breast cancer detection.

出版信息

Appl Opt. 2024 May 1;63(13):3609-3618. doi: 10.1364/AO.518504.

Abstract

This paper presents a decagonal patch antenna loaded with graphene designed for terahertz (THz) frequency applications, with a specific emphasis on its potential for early breast cancer detection. The proposed antenna features a hybrid structure, integrating both copper and graphene materials. A decagonal graphene strip is intricately incorporated into the copper patch, yielding significant improvements in reflection coefficient, bandwidth, and gain. The antenna, with dimensions of 155µ×130µ×13µ, is designed on a polyimide substrate, characterized by a dielectric constant of 3.5 and a loss tangent of 0.0027. To ensure relevance in medical contexts, the design is optimized to operate within the frequency range of 2.1 to 5.7 THz, a critical spectrum for medical applications. Simulation results validate the effectiveness of the proposed antenna, demonstrating <-10 within the frequency band of 2.1 to 5.7 THz (92.3% fractional bandwidth). The antenna exhibits an impressive bandwidth of 3.6 THz and a gain of 7.87 dBi at 4 THz. These findings establish the graphene-loaded decagonal patch antenna as a highly promising solution for breast cancer detection applications, showcasing its potential in the realm of medical diagnostics.

摘要

本文提出了一种用于太赫兹(THz)频率应用的加载石墨烯的十边形贴片天线,特别强调其在早期乳腺癌检测中的应用潜力。所提出的天线采用混合结构,集成了铜和石墨烯材料。一个十边形石墨烯条被巧妙地融入到铜贴片中,显著改善了反射系数、带宽和增益。该天线尺寸为 155µ×130µ×13µ,设计在聚酰亚胺基板上,介电常数为 3.5,损耗正切为 0.0027。为了确保在医学环境中的相关性,该设计优化以在 2.1 到 5.7 THz 的频率范围内工作,这是医学应用的关键光谱。仿真结果验证了所提出天线的有效性,在 2.1 到 5.7 THz 的频段内显示出 <-10 的反射系数(92.3%的分数带宽)。该天线在 4 THz 时具有令人印象深刻的 3.6 THz 带宽和 7.87 dBi 的增益。这些发现确立了加载石墨烯的十边形贴片天线作为乳腺癌检测应用的一种极具前途的解决方案,展示了其在医学诊断领域的潜力。

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