Li Zhongyang, Ma Yingfang, Huang Ran, Singh Ranjan, Gu Jianqiang, Tian Zhen, Han Jiaguang, Zhang Weili
Center for Terahertz Waves and College of Precision Instrument and Optoelectronics Engineering, Key Laboratory of Opto-Electronics Information and Technical Science, Ministry of Education, Tianjin University, China.
Opt Express. 2011 Apr 25;19(9):8912-9. doi: 10.1364/OE.19.008912.
Coupling between superradiant and subradiant mode resonators in a metamaterial unit cell plays an important role in observing the sharp transparency peak due to destructive interference between the resonators. This effect is enhanced as the resonators are brought closer to each other in a conventional planar arrangement. We present a novel coupling scheme of planar terahertz metamaterial to tune the plasmon-induced transparency peak by physically varying the distance between the superradiant and the subradiant resonators in such a way that the transparency peak begins to disappear as the coupled resonators are brought closer than a critical separation distance. The effect is attributed to the disappearance of the resonant behavior of the subradiant resonator in a closely coupled regime. The simple planar design presented here demonstrates a scheme to manipulate the electromagnetically induced transparency-like behavior in terahertz metamaterials and this could lead to the development of unique slow light devices for terahertz applications.
超材料单元胞中超级辐射模式谐振器与亚辐射模式谐振器之间的耦合,在因谐振器间相消干涉而观测到尖锐的透明峰方面起着重要作用。在传统平面排列中,随着谐振器彼此靠近,这种效应会增强。我们提出了一种新颖的平面太赫兹超材料耦合方案,通过物理改变超级辐射谐振器与亚辐射谐振器之间的距离来调谐等离子体诱导透明峰,使得当耦合谐振器彼此靠近至小于临界分离距离时,透明峰开始消失。这种效应归因于在紧密耦合状态下亚辐射谐振器谐振行为的消失。这里展示的简单平面设计证明了一种在太赫兹超材料中操纵类电磁诱导透明行为的方案,这可能会推动用于太赫兹应用的独特慢光器件的发展。