作者: Dan Liu , Lingxi Wu , Qiong Liu , Renlong Zhou , Suxia Xie
DOI: 10.1016/J.OPTCOM.2016.05.019
关键词: Surface plasmon resonance 、 Bilayer graphene 、 Optoelectronics 、 Fermi level 、 Optics 、 Surface plasmon polariton 、 Graphene 、 Localized surface plasmon 、 Graphene nanoribbons 、 Plasmon 、 Materials science
摘要: Abstract We theoretically demonstrate the existence of plasmon switching effect in graphene nanostructure. By using finite-difference time-domain (FDTD) method, resonance modes are studied nanoribbon pair arrays with change Fermi level, width, and carrier mobility. It is found that level width play an important role changing distribution electric energy on different nanoribbons, resulting a significant effect. Moreover, we study characteristic mode one ribbon by glass rod shape. The kerr material sandwiched between also considered.