Numerical Investigation of Graphene and STO Based Tunable Terahertz Absorber with Switchable Bifunctionality of Broadband and Narrowband Absorption

A graphene metamaterial and strontium titanate (STO)-based terahertz absorber with tunable and switchable bifunctionality has been numerically investigated in this work. Through electrically tuning the Fermi energy level of the cross-shaped graphene, the bandwidth of the proposed absorber varies con...

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Main Authors: Yan Liu, Rui Huang, Zhengbiao Ouyang
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/11/8/2044
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spelling doaj-1e2a4b0511494293a4dd65a0cb587ec22021-08-26T14:09:17ZengMDPI AGNanomaterials2079-49912021-08-01112044204410.3390/nano11082044Numerical Investigation of Graphene and STO Based Tunable Terahertz Absorber with Switchable Bifunctionality of Broadband and Narrowband AbsorptionYan Liu0Rui Huang1Zhengbiao Ouyang2THz Technical Research Center of Shenzhen University, Shenzhen Key Laboratory of Micro-Nano Photonic Information Technology, Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, ChinaSchool of Materials Science and Engineering, Hanshan Normal University, Chaozhou 521041, ChinaTHz Technical Research Center of Shenzhen University, Shenzhen Key Laboratory of Micro-Nano Photonic Information Technology, Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, ChinaA graphene metamaterial and strontium titanate (STO)-based terahertz absorber with tunable and switchable bifunctionality has been numerically investigated in this work. Through electrically tuning the Fermi energy level of the cross-shaped graphene, the bandwidth of the proposed absorber varies continuously from 0.12 THz to 0.38 THz with the absorptance exceeding 90%, which indicates the functionality of broadband absorption. When the Fermi energy level of the cross-shaped graphene is 0 eV, the proposed absorber exhibits the other functionality of narrowband absorption owing to the thermal control of the relative permittivity of STO, and the rate of change of the center frequency is 50% ranging from 0.56 THz to 0.84 THz. The peak intensity of the narrowband absorption approximates to nearly 100% through adjusting the Fermi energy level of the graphene strips. The calculated results indicate that it is not sensitive to the polarization for wide incidence angles. The proposed absorber can realize tunable bifunctionality of broadband absorption with a tunable bandwidth and narrowband absorption with a tunable center frequency, which provides an alternative design opinion of the tunable terahertz devices with high performance for high-density integrated systems.https://www.mdpi.com/2079-4991/11/8/2044terahertz absorberdynamically tunableswitchable bifunctionalityexcellent absorptance
collection DOAJ
language English
format Article
sources DOAJ
author Yan Liu
Rui Huang
Zhengbiao Ouyang
spellingShingle Yan Liu
Rui Huang
Zhengbiao Ouyang
Numerical Investigation of Graphene and STO Based Tunable Terahertz Absorber with Switchable Bifunctionality of Broadband and Narrowband Absorption
Nanomaterials
terahertz absorber
dynamically tunable
switchable bifunctionality
excellent absorptance
author_facet Yan Liu
Rui Huang
Zhengbiao Ouyang
author_sort Yan Liu
title Numerical Investigation of Graphene and STO Based Tunable Terahertz Absorber with Switchable Bifunctionality of Broadband and Narrowband Absorption
title_short Numerical Investigation of Graphene and STO Based Tunable Terahertz Absorber with Switchable Bifunctionality of Broadband and Narrowband Absorption
title_full Numerical Investigation of Graphene and STO Based Tunable Terahertz Absorber with Switchable Bifunctionality of Broadband and Narrowband Absorption
title_fullStr Numerical Investigation of Graphene and STO Based Tunable Terahertz Absorber with Switchable Bifunctionality of Broadband and Narrowband Absorption
title_full_unstemmed Numerical Investigation of Graphene and STO Based Tunable Terahertz Absorber with Switchable Bifunctionality of Broadband and Narrowband Absorption
title_sort numerical investigation of graphene and sto based tunable terahertz absorber with switchable bifunctionality of broadband and narrowband absorption
publisher MDPI AG
series Nanomaterials
issn 2079-4991
publishDate 2021-08-01
description A graphene metamaterial and strontium titanate (STO)-based terahertz absorber with tunable and switchable bifunctionality has been numerically investigated in this work. Through electrically tuning the Fermi energy level of the cross-shaped graphene, the bandwidth of the proposed absorber varies continuously from 0.12 THz to 0.38 THz with the absorptance exceeding 90%, which indicates the functionality of broadband absorption. When the Fermi energy level of the cross-shaped graphene is 0 eV, the proposed absorber exhibits the other functionality of narrowband absorption owing to the thermal control of the relative permittivity of STO, and the rate of change of the center frequency is 50% ranging from 0.56 THz to 0.84 THz. The peak intensity of the narrowband absorption approximates to nearly 100% through adjusting the Fermi energy level of the graphene strips. The calculated results indicate that it is not sensitive to the polarization for wide incidence angles. The proposed absorber can realize tunable bifunctionality of broadband absorption with a tunable bandwidth and narrowband absorption with a tunable center frequency, which provides an alternative design opinion of the tunable terahertz devices with high performance for high-density integrated systems.
topic terahertz absorber
dynamically tunable
switchable bifunctionality
excellent absorptance
url https://www.mdpi.com/2079-4991/11/8/2044
work_keys_str_mv AT yanliu numericalinvestigationofgrapheneandstobasedtunableterahertzabsorberwithswitchablebifunctionalityofbroadbandandnarrowbandabsorption
AT ruihuang numericalinvestigationofgrapheneandstobasedtunableterahertzabsorberwithswitchablebifunctionalityofbroadbandandnarrowbandabsorption
AT zhengbiaoouyang numericalinvestigationofgrapheneandstobasedtunableterahertzabsorberwithswitchablebifunctionalityofbroadbandandnarrowbandabsorption
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