Joint Laboratory for Extreme Conditions Matter Properties, Southwest University of Science and Technology, Mianyang 621010, China.
Research Center of Laser Fusion, China Academy of Engineering Physics, Mianyang 621010, China.
Sensors (Basel). 2018 Dec 18;18(12):4489. doi: 10.3390/s18124489.
In the present study, we design a tunable plasmonic refractive index sensor with nanoring-strip graphene arrays. The calculations prove that the nanoring-strip have two transmission dips. By changing the strip length L of the present structure, we find that the nanoring-strip graphene arrays have a wide range of resonances (resonance wavelength increases from 17.73 μm to 28.15 μm). When changing the sensing medium refractive index n, the sensitivity of mode A and B can reach 2.97 μm/RIU and 5.20 μm/RIU. By changing the doping level , we notice that the transmission characteristics can be tuned flexibly. Finally, the proposed sensor also shows good angle tolerance for both transverse magnetic (TM) and transverse electric (TE) polarizations. The proposed nanoring-strip graphene arrays along with the numerical results could open a new avenue to realize various tunable plasmon devices and have a great application prospect in biosensing, detection, and imaging.
在本研究中,我们设计了一种具有纳米环带石墨烯阵列的可调谐等离子体折射率传感器。计算证明,纳米环带具有两个透射峰。通过改变本结构的条带长度 L,我们发现纳米环带石墨烯阵列具有较宽的共振范围(共振波长从 17.73 μm 增加到 28.15 μm)。当改变传感介质折射率 n 时,模式 A 和 B 的灵敏度可分别达到 2.97 μm/RIU 和 5.20 μm/RIU。通过改变掺杂水平 ,我们注意到传输特性可以灵活调节。最后,所提出的传感器对于 TM 和 TE 两种偏振也表现出良好的角度容差。所提出的纳米环带石墨烯阵列及其数值结果为实现各种可调谐等离子体器件开辟了新途径,在生物传感、检测和成像方面具有广阔的应用前景。