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A multi-band and polarization-independent perfect absorber based on Dirac semimetals circles and semi-ellipses array 被引量:1
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作者 Zhiyou Li yingting yi +6 位作者 Danyang Xu Hua Yang Zao yi Xifang Chen Yougen yi Jianguo Zhang Pinghui Wu 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第9期574-578,共5页
We design a four-band terahertz metamaterial absorber that relied on the block Dirac semi-metal(BDS).It is composed of a Dirac material layer,a gold reflecting layer,and a photonic crystal slab(PCS)medium layer.This s... We design a four-band terahertz metamaterial absorber that relied on the block Dirac semi-metal(BDS).It is composed of a Dirac material layer,a gold reflecting layer,and a photonic crystal slab(PCS)medium layer.This structure achieved perfect absorption of over 97%at 4.06 THz,6.15 THz,and 8.16 THz.The high absorption can be explained by the localized surface plasmon resonance(LSPR).And this conclusion can be proved by the detailed design of the surface structure.Moreover,the resonant frequency of the device can be dynamically tuned by changing the Fermi energy of the BDS.Due to the advantages such as high absorption,adjustable resonance,and anti-interference of incident angle and polarization mode,the Dirac semi-metal perfect absorber(DSPA)has great potential value in fields such as biochemical sensing,information communication,and nondestructive detection. 展开更多
关键词 metamaterials terahertz block Dirac semi-metal localized surface plasmon resonance
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A high-quality-factor ultra-narrowband perfect metamaterial absorber based on monolayer molybdenum disulfide
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作者 Liying Jiang yingting yi +7 位作者 yijun Tang Zhiyou Li Zao yi Li Liu Xifang Chen Ronghua Jian Pinghui Wu Peiguang Yan 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第3期571-574,共4页
In order to significantly improve the absorption efficiency of monolayer molybdenum disulfide(M-MoS_(2)), an ultranarrowband M-MoS_(2)metamaterial absorber was obtained through theoretical analysis and numerical calcu... In order to significantly improve the absorption efficiency of monolayer molybdenum disulfide(M-MoS_(2)), an ultranarrowband M-MoS_(2)metamaterial absorber was obtained through theoretical analysis and numerical calculation using the finite difference time domain method. The physical mechanism can be better analyzed through critical coupling and guided mode resonance. Its absorption rate at λ = 806.41 nm is as high as 99.8%, which is more than 12 times that of bare MMoS_(2). From the simulation results, adjusting the geometric parameters of the structure can control the resonant wavelength range of the M-MoS_(2). In addition, we also found that the maximum quality factor is 1256.8. The numerical result shows that the design provides new possibilities for ultra-narrowband M-MoS_(2) perfect absorbers in the near-infrared spectrum.The results of this work indicate that the designed structure has excellent prospects for application in wavelength-selective photoluminescence and photodetection. 展开更多
关键词 metamaterials ultra-narrowband high quality factor critical coupling
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