Temperature‐Adaptive Modulation of Transverse Magnetic Intrinsic Graphene Plasmons

Dong Sun, X. Hua, Lijun Wang, Daqing Liu, N. Ma
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Abstract

A method for modulating transverse magnetic intrinsic graphene plasmons by temperature is proposed. In contrast to existing 2D or 3D infinite graphene structures, an intrinsic graphene 3D finite structure with periodicity in all three directions is designed. At the matching point, where the dispersion curve of the intrinsic graphene plasmons intersects with that of electromagnetic radiation, the intrinsic graphene plasmons and electromagnetic radiation can be excited by each other; in other words, the plasmon can be excited by light without additional mechanisms. Furthermore, the influence of environment temperature on the matching point is shown. The study reveals that the plasmon modulation is adaptive to the temperature. These results are beneficial for the design of compact graphene‐based optoelectronic devices.
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横向磁性本征石墨烯等离子体的温度自适应调制
提出了一种利用温度调制横向磁性石墨烯等离激子的方法。与现有的二维或三维无限石墨烯结构相比,设计了具有三个方向周期性的本征石墨烯三维有限结构。在本征石墨烯等离子体色散曲线与电磁辐射色散曲线相交的匹配点,本征石墨烯等离子体与电磁辐射可以相互激发;换句话说,等离子体激元可以被光激发而不需要额外的机制。进一步分析了环境温度对匹配点的影响。研究表明,等离子体激元调制对温度有一定的适应性。这些结果有助于设计紧凑的基于石墨烯的光电器件。
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