Analysis of magnetically biased graphene absorber using anisotropic HIE-FDTD method
An anisotropic hybrid implicit-explicit finite-difference time-domain scheme is developed to investigate the magnetically biased graphene absorber. The anisotropic conductivity of the graphene is incorporated into the scheme by using the auxiliary difference equations. Numerical examples show that t...
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Published in | Journal of electromagnetic waves and applications Vol. 33; no. 6; pp. 722 - 733 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Taylor & Francis
13.04.2019
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Subjects | |
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Abstract | An anisotropic hybrid implicit-explicit finite-difference time-domain scheme is developed to investigate the magnetically biased graphene absorber. The anisotropic conductivity of the graphene is incorporated into the scheme by using the auxiliary difference equations. Numerical examples show that the presented scheme has much higher simulation velocity than the conventional finite-difference time-domain scheme, because the time increment in proposed method is not confined by the fine meshes in graphene sheet. Besides, the results validate that, by controlling the biased magnetic field, the graphene exhibits tunable polarization rotation property at Terahertz spectra and can be used to design magnetically tunable Terahertz absorber effectively. |
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AbstractList | An anisotropic hybrid implicit-explicit finite-difference time-domain scheme is developed to investigate the magnetically biased graphene absorber. The anisotropic conductivity of the graphene is incorporated into the scheme by using the auxiliary difference equations. Numerical examples show that the presented scheme has much higher simulation velocity than the conventional finite-difference time-domain scheme, because the time increment in proposed method is not confined by the fine meshes in graphene sheet. Besides, the results validate that, by controlling the biased magnetic field, the graphene exhibits tunable polarization rotation property at Terahertz spectra and can be used to design magnetically tunable Terahertz absorber effectively. |
Author | Tian, Chunming Chen, Juan |
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CitedBy_id | crossref_primary_10_1080_17455030_2022_2051770 crossref_primary_10_1016_j_micrna_2022_207261 |
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Snippet | An anisotropic hybrid implicit-explicit finite-difference time-domain scheme is developed to investigate the magnetically biased graphene absorber. The... |
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SubjectTerms | Absorber finite-difference time-domain graphene magnetically biased terahertz |
Title | Analysis of magnetically biased graphene absorber using anisotropic HIE-FDTD method |
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