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Metamaterial terahertz switch based on split-ring resonator embedded with photoconductive silicon

机译:基于嵌入光导硅的裂环谐振器的超材料太赫兹开关

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In this paper, a metamaterial terahertz (THz) switch based on a split-ring resonator embedded with photoconductive silicon is presented and numerically investigated. Simulation results show that the switch works at two different resonant modes with different pump light powers and that the response time of the switch is less than 1 ps. By defining the switching window as the frequency range where the transmission magnitude of the ON state is one order of magnitude higher than the OFF state, a switching window ranging from 1.26 to 1.49 THz is obtained. The large modulation depth of the switch is due to the large separations of the maximum and minimum transmissions, which are 0.89 and 0.01, respectively. Particularly, the switch is frequency tunable by changing the thickness and permittivity of the dielectric layer. (C) 2015 Optical Society of America
机译:本文提出了一种基于嵌入了光导硅的开口环谐振器的超材料太赫兹(THz)开关,并进行了数值研究。仿真结果表明,该开关在两种不同的谐振模式下具有不同的泵浦光功率,并且开关的响应时间小于1 ps。通过将切换窗口定义为其中ON状态的传输幅度比OFF状态的传输幅度高一个数量级的频率范围,可以获得在1.26至1.49THz范围内的切换窗口。开关的较大调制深度归因于最大传输和最小传输的较大间隔,分别为0.89和0.01。特别地,通过改变介电层的厚度和介电常数,开关是频率可调的。 (C)2015年美国眼镜学会

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