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Plasmonic properties of graphene on uniaxially anisotropic substrates

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【作者】 汪圣川游斌张锐韩奎沈晓鹏王伟华

【Author】 Shengchuan Wang;Bin You;Rui Zhang;Kui Han;Xiaopeng Shen;Weihua Wang;School of Materials and Physics, China University of Mining and Technology;

【通讯作者】 沈晓鹏;王伟华;

【机构】 School of Materials and Physics, China University of Mining and Technology

【摘要】 Most of the current graphene plasmonic researches are based on the substrates with isotropic dielectric constant such as silicon.In this work,we investigate optical properties of graphene nanoribbon arrays placed on a uniaxially anisotropic substrate,where the anisotropy provides an additional freedom to tune the behaviors of graphene plasmons,and its effect can be described by a simple effective formula.In practice,the substrates of semi-infinite and finite thickness are discussed by using both the formula and full wave simulations.Particularly,the dielectric constants ε|| and ε approaching zero are intensively studied,which show different impacts on the transverse magnetic(TM) surface modes.In reality,the hexagonal boron nitride(hBN) can be chosen as the anisotropic substrate,which is also a hyperbolic material in nature.

【Abstract】 Most of the current graphene plasmonic researches are based on the substrates with isotropic dielectric constant such as silicon.In this work,we investigate optical properties of graphene nanoribbon arrays placed on a uniaxially anisotropic substrate,where the anisotropy provides an additional freedom to tune the behaviors of graphene plasmons,and its effect can be described by a simple effective formula.In practice,the substrates of semi-infinite and finite thickness are discussed by using both the formula and full wave simulations.Particularly,the dielectric constants ε|| and ε approaching zero are intensively studied,which show different impacts on the transverse magnetic(TM) surface modes.In reality,the hexagonal boron nitride(hBN) can be chosen as the anisotropic substrate,which is also a hyperbolic material in nature.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 11604382 and 11574140);the Natural Science Foundation of Jiangsu Province,China (Grant No. BK20160236)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2021年03期
  • 【分类号】O469
  • 【被引频次】1
  • 【下载频次】13
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