dielectric loading
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Sensors ◽  
2021 ◽  
Vol 21 (23) ◽  
pp. 8151
Author(s):  
Aruna Veeraselvam ◽  
Gulam Nabi Alsath Mohammed ◽  
Kirubaveni Savarimuthu ◽  
Jaume Anguera ◽  
Jessica Constance Paul ◽  
...  

In this paper, a graphene-based THz metamaterial has been designed and characterized for use in sensing various refractive index profiles. The proposed single-band THz sensor was constructed using a graphene-metal hybridized periodic metamaterial wherein the unit cell had a footprint of 1.395λeff × 1.395λeff and resonated at 4.4754 THz. The realized peak absorption was 98.88% at 4.4754 THz. The sensitivity of the proposed metamaterial sensor was estimated using the absorption characteristics of the unit cell. The performance of the sensor was analyzed under two different categories, viz. the random dielectric loading and chemical analytes, based on the refractive index. The proposed THz sensor offered a peak sensitivity of 22.75 GHz/Refractive Index Unit (RIU) for the various sample loadings. In addition, the effect of the sample thickness on the sensor performance was analyzed and the results were presented. From the results, it can be inferred that the proposed metamaterial THz sensor that was based on a refractive index is suitable for THz sensing applications.


2020 ◽  
Vol 32 (3) ◽  
pp. 035205
Author(s):  
Mingjie Wan ◽  
Jingyu Wu ◽  
Jun Liu ◽  
Zhuo Chen ◽  
Ping Gu ◽  
...  

2020 ◽  
Vol 12 (7) ◽  
pp. 588-597 ◽  
Author(s):  
J. Muñoz-Enano ◽  
P. Vélez ◽  
M. Gil ◽  
F. Martín

AbstractThis paper proposes a differential sensor based on a pair of open split ring resonators (OSRR) operating in reflection. The output signal is thus the differential reflection coefficient of both resonators, intimately related to their dielectric loading. Thus, for identical loads in both sensing resonators, the individual reflection coefficients are equal, thereby providing an ideally null output signal. By contrast, when unequal dielectric loads truncate the symmetry, the reflection coefficients are different, resulting in a differential output signal related to the level of asymmetry. In order to ease the measurement of the output signal, a rat-race hybrid coupler is used. The OSRR sensing loads are connected to the coupled ports of the hybrid coupler, whereas the input signal is injected to the Δ-port, and the output signal is collected at the isolated port (Σ-port). By this means, the output signal, i.e. the differential reflection coefficient between both sensing loads, is obtained from the transmission coefficient of a simple two-port structure. For experimental validation purposes, the sensor is applied to the measurement of isopropanol content in aqueous solutions, and for that purpose, the sensitive regions are equipped with microfluidic channels.


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