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Optical absorbance in multilayer two-dimensional materials: Graphene and antimonene

机译:多层二维材料中的光学吸光度:石墨烯和锑烯

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摘要

Antimonene, one of the group V elemental monolayers, has attracted intense interest due to its intriguing electronic properties. Here, we present the optical absorption properties of atomically flat antimonene for which the directional bonds between Sb atoms appear to be analogous to C-C bonds in graphene. The results, based on first-principles density functional theory calculations, predict the absorbance in multilayer antimonene to be comparable or higher than that calculated for multilayer graphene. Specifically, the IR absorption in antimonene is significantly higher with a prominent band at about 4 μm associated with the dipole-allowed interband transitions. Furthermore, a strong dependence of absorbance on topology is predicted for both antimonene and graphene which results from the subtle variations in their stacking-dependent band structures. Our results suggest multilayer antimonene to be a good candidate material for optical power limiting applications in the IR region.
机译:锑烯,v元素单层之一,由于其有趣的电子特性,引起了强烈的兴趣。这里,我们介绍了原子平抗体的光学吸收性能,其中Sb原子之间的定向键类似于石墨烯中的C-C键。结果基于第一原理的密度官能理论计算,预测多层锑的吸光度与多层石墨烯的比较或高。具体地,锑中的IR吸收显着高于与允许偶极的间带式转换相关的约4μm的突出条带。此外,对于锑和石墨烯,预计吸光度对拓扑的强烈依赖性,这是由它们的堆叠依赖带结构的微妙变化导致的锑和石墨烯。我们的结果表明,多层锑是IR区域光功率限制应用的良好候选材料。

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  • 来源
    《Applied Physics Letters》 |2020年第26期|263102.1-263102.5|共5页
  • 作者单位

    Department of Physics Michigan Technological University Houghton Michigan 49931 USA Department of Physics School of Basic and Applied Sciences Central University of Punjab Bathinda 151001 India;

    Department of Physics Michigan Technological University Houghton Michigan 49931 USA;

    Department of Physics Michigan Technological University Houghton Michigan 49931 USA;

    CCDC Army Research Laboratory Weapons and Materials Research ATTN: FCDD-RLW Aberdeen Proving Ground Aberdeen Maryland 21005-5069 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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