Simultaneous realization of the single-band and broadband terahertz perfect absorber using one piece of metamaterial resonator

被引:0
作者
Ben-Xin Wang
Yuanhao He
Chao Tang
Qingshan Niu
Fuwei Pi
机构
[1] Jiangnan University,School of Science
[2] Jiangnan University,State Key Laboratory of Food Science and Technology, School of Food Science and Technology
来源
SN Applied Sciences | 2020年 / 2卷
关键词
Metamaterials; Perfect absorber; Broadband absorption; Terahertz;
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中图分类号
学科分类号
摘要
A kind of terahertz metamaterial absorber, made of only an Au closed-ring resonator and a dielectric layer deposited on a continuous Au film, is presented to achieve bifunctional absorption characteristic. Unlike traditional absorbers having the single-functional absorption features of single-band or broadband, the designed device exhibits not only the single-band absorption response at frequency of 1.45 THz, but also a broadband absorption performance, which is caused by the superposition of three adjacent frequencies that are all localized at right side of the single-band absorption. Importantly, the relative absorption bandwidth of the broadband performance of the device over absorption rates of 50% and 80% can, respectively, reach 47.22% and 35.97%, which is very close to (and even exceed) the performance of previous single function of broadband absorbers that require several different lengths of metallic elements. The designed bifunctional absorber has the comprehensive advantages of the single functions of the single-band and broadband absorbers, and therefore, this work can offer an inspiring method to obtain a bifunctional absorber through using only one piece of metamaterial.
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[1]  
Yahiaoui R(2018)Electromagnetically induced transparency control in terahertz metasurfaces based on bright-bright mode coupling Phys Rev B 97 155403-undefined
[2]  
Burrow JA(2019)Deep-subwavelength coupling-induced fano resonances in symmetric terahertz metamaterials Phys Status Solidi RRL 3 1900310-undefined
[3]  
Mekonen SM(2019)Demonstration of slow-light effect in silicon-wire waveguides combined with metamaterials Opt Express 27 15007-undefined
[4]  
Sarangan A(2018)A novel terahertz semiconductor metamaterial for slow light device and dual-band modulator applications Plasmonics 13 459-undefined
[5]  
Mathews J(2008)Perfect metamaterial absorber Phys Rev Lett 100 207402-undefined
[6]  
Agha I(2018)Metamaterial perfect absorber with unabated size-independent absorption Opt Express 26 20471-undefined
[7]  
Searles TA(2018)Terahertz metamaterial perfect absorber with continuously tunable air spacer layer App Phys Lett 113 061113-undefined
[8]  
Karmakar S(2019)Photoexcited switchable single-/dual-band terahertz metamaterial absorber Mater Res Express 6 075807-undefined
[9]  
Banerjee S(2018)Characterizations of reconfigurable infrared metamaterial absorbers Opt Lett 43 4783-undefined
[10]  
Kumar D(2019)Linearly thermal-tunable near-infrared ultra-narrowband metamaterial perfect absorber with low power and a large modulation depth based on a four-nanorod-coupled a-silicon resonator Opt Lett 44 3885-undefined