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Accurate numerical study of graphene disk surface plasmon resonances

机译:石墨烯盘表面等离子体共振的准确数值研究

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The excitation of surface-plasmon resonances on a graphene disk is studied numerically as a 3D electromagnetic wave-scattering problem. Mathematical model for the scattering of a horizontal magnetic dipole field by a graphene disk is based on the Maxwell equations with the electrically-resistive boundary conditions on the disk surface, where graphene electron conductivity is included as a parameter and determined from the Kubo formalism. It is shown that plasmon resonance frequencies in the terahertz range shift with variation of the chemical magnetic potential of the graphen. Far field radiation patterns are plotted in the most intensive resonances.
机译:作为3D电磁波散射问题的数量地研究了石墨烯盘上的表面等离子体谐振的激发。通过石墨烯盘散射水平磁性偶极场的数学模型基于磁盘方程,其中磁盘表面上的电阻边界条件,其中石墨烯电子电导率作为参数包括并从库博形式中确定。结果表明,在太赫兹范围内的等离子体谐振频率随图形的化学磁电位的变化而变化。远场辐射图案在最强烈的共振中绘制。

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