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Investigation the hexagonal cylindrical absorber for bio- sensing in optical regime

机译:研究用于光学传感的六角形圆柱形吸收体

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Optical absorber is important for various applications like solar-cell or optical sensing such as optical imaging. This paper has investigated the various formations of the cylindrical hollow structure such as triangular, rectangular and hexagonal cross-section and shows the benefit of the hexagonal absorber for 150 THz and the parametric studies investigated for the hexagonal structure. For achieving the multiband absorber, we have used another hexagonal particle inside of the first model the same as the co-axial formation and obtained dual-band characteristic. We show that by the asymmetric model we have the ability to obtain Fano response for the prototype absorber which can be noticed for the wideband application. The electric field shows that the prototype absorber has dipole mode. Finally, we have checked the external material effect on frequency shift as a factor for material recognition. We have compared the frequency shift in hexagonal, co-axial and Fano model for various refractive indexes. The studies show that the co-axial model is more suitable for material recognition, in comparison to hexagonal and Fano models.
机译:光学吸收器对于诸如太阳能电池或光学传感(例如光学成像)等各种应用很重要。本文研究了圆柱形中空结构的各种形式,例如三角形,矩形和六边形横截面,并展示了六边形吸收器在150 THz时的优势以及对六边形结构进行的参数研究。为了实现多频带吸收器,我们在第一模型内部使用了与同轴结构相同的另一个六边形粒子,并获得了双频带特性。我们表明,通过非对称模型,我们能够获得原型吸收器的Fano响应,这在宽带应用中可以注意到。电场表明原型吸收器具有偶极子模式。最后,我们检查了外部材料对频移的影响,将其作为材料识别的一个因素。我们比较了六边形,同轴和Fano模型中各种折射率的频移。研究表明,与六边形和Fano模型相比,同轴模型更适合于材料识别。

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