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超窄带石墨烯折射率传感器的设计。

Design of Ultra-Narrow Band Graphene Refractive Index Sensor.

机构信息

School of Physics and Optoelectronic Engineering, Yangtze University, Jingzhou 434023, China.

State Key Laboratory of Electronic Thin Film and Integrated Devices, School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 610054, China.

出版信息

Sensors (Basel). 2022 Aug 28;22(17):6483. doi: 10.3390/s22176483.

Abstract

The paper proposes an ultra-narrow band graphene refractive index sensor, consisting of a patterned graphene layer on the top, a dielectric layer of SiO in the middle, and a bottom Au layer. The absorption sensor achieves the absorption efficiency of 99.41% and 99.22% at 5.664 THz and 8.062 THz, with the absorption bandwidths 0.0171 THz and 0.0152 THz, respectively. Compared with noble metal absorbers, our graphene absorber can achieve tunability by adjusting the Fermi level and relaxation time of the graphene layer with the geometry of the absorber unchanged, which greatly saves the manufacturing cost. The results show that the sensor has the properties of polarization-independence and large-angle insensitivity due to the symmetric structure. In addition, the practical application of testing the content of hemoglobin biomolecules was conducted, the frequency of first resonance mode shows a shift of 0.017 THz, and the second resonance mode has a shift of 0.016 THz, demonstrating the good frequency sensitivity of our sensor. The S (sensitivities) of the sensor were calculated at 875 GHz/RIU and 775 GHz/RIU, and quality factors FOM (Figure of Merit) are 26.51 and 18.90, respectively; and the minimum limit of detection is 0.04. By comparing with previous similar sensors, our sensor has better sensing performance, which can be applied to photon detection in the terahertz band, biochemical sensing, and other fields.

摘要

本文提出了一种超窄带石墨烯折射率传感器,由顶部的图案化石墨烯层、中间的 SiO 介电层和底部的 Au 层组成。吸收传感器在 5.664THz 和 8.062THz 处的吸收效率分别达到 99.41%和 99.22%,吸收带宽分别为 0.0171THz 和 0.0152THz。与贵金属吸收器相比,我们的石墨烯吸收器可以通过调整石墨烯层的费米能级和弛豫时间来实现可调谐性,而无需改变吸收器的几何形状,从而大大降低了制造成本。结果表明,由于对称结构,传感器具有偏振无关和大角度不敏感性。此外,还进行了测试血红蛋白生物分子含量的实际应用,第一个共振模式的频率显示出 0.017THz 的偏移,第二个共振模式的频率显示出 0.016THz 的偏移,表明我们的传感器具有良好的频率灵敏度。传感器的 S(灵敏度)分别为 875GHz/RIU 和 775GHz/RIU,品质因数 FOM(质量因数)分别为 26.51 和 18.90;最小检测限为 0.04。与以前类似的传感器相比,我们的传感器具有更好的传感性能,可应用于太赫兹波段的光子探测、生化传感等领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfb3/9460058/857f59046e5a/sensors-22-06483-g001.jpg

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