Multiband Generation and Absorption Enhancement in a Graphite-Based Metal-Free Absorber

被引:0
作者
Anil Kumar Soni
Gaurav Varshney
机构
[1] Guru Ghasidas Vishwavidyalaya,ECE Department, School of Studies in Engineering & Technology
[2] Bilaspur,ECE Department
[3] National Institute of Technology Patna,undefined
来源
Plasmonics | 2021年 / 16卷
关键词
Absorption; Multiband; Metal-free; Enhancement; Graphite; Terahertz;
D O I
暂无
中图分类号
学科分类号
摘要
A technique is implemented for multiband generation and absorption enhancement in a graphite-based absorber. The aspect ratio of the graphite sheet is selected to support the generation of multiple absorption bands. Later on, the notches and slots are inserted in the graphite sheet for absorption enhancement. The generated multiple absorption bands can be controlled separately by varying the different physical parameters of the absorber. The absorber response can be set with the desired frequency ratio, number of bands with desired bandwidth, level of the absorption peaks and frequency selectivity. The resonant frequency of the generated multiple bands can be shifted so that either they can be merged to provide the wide absorption band or the multiband response with sufficient guard bands. The research work represents a way to implement the metal-free absorber structure. Moreover, the proposed structure is polarization insensitive and operates with wide value of the incident angle. In addition, the proposed absorber can also be utilized as a sensor with high sensitivity.
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页码:241 / 252
页数:11
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[11]  
Liu Y(2008)Microfluidic devices for terahertz spectroscopy of biomolecules Opt Express 16 1577-7
[12]  
Liu Y(2018)Design of a metasurface-based dual-band terahertz perfect absorber with very high Q-factors for sensing applications Opt Commun 416 152-15570
[13]  
Fu W(2018)Terahertz biosensing metamaterial absorber for virus detection based on spoof surface plasmon polaritons Int J RF Microw Comput Eng 28 1-274
[14]  
Luo Y(2014)Graphene based tunable metamaterial absorber and polarization modulation in terahertz frequency Opt Express 22 22743-19194
[15]  
Cheon H(2018)Graphene-based dual-band independently tunable infrared absorber Nanoscale. 10 15564-201
[16]  
Yang HJ(2018)A simple design of a multi-band terahertz metamaterial absorber based on periodic square metallic layer with T-shaped gap Plasmonics. 13 269-209
[17]  
Lee SH(2017)Ultra-multiband absorption enhancement of graphene in a metal-dielectric-graphene sandwich structure covering terahertz to mid-infrared regime Opt Express 25 19185-1852
[18]  
Kim YA(2020)Infrared five-band polarization insensitive absorber with high absorptivity based on single complex resonator Opt Commun 456 124575-155
[19]  
Son JH(2018)Based on graphene tunable dual-band terahertz metamaterial absorber with wide-angle Opt Commun 415 194-9
[20]  
He Y(2018)Theoretical design of twelve-band infrared metamaterial perfect absorber by combining the dipole, quadrupole, and octopole plasmon resonance modes of four different ring-strip resonators Opt Express 26 12838-7