Wen Kunhua, Yan Lianshan, Pan Wei, Luo Bin, Guo Zhen, Guo Yinghui
Center for Information Photonics & Communications, School of Information Science and Technology, Southwest Jiaotong University, Chengdu 610031, Sichuan, China.
Opt Express. 2012 Dec 17;20(27):28025-32. doi: 10.1364/OE.20.028025.
A metal-insulator-metal (MIM)-based four-port quasi-circulator consisting of four bus waveguides and eight narrow inside/outside slits is proposed without using nonreciprocity. Once the input port is defined, only a specific output port could be obtained by proper the design of parameters of the waveguides and slits. Simulation results based on finite-different time-domain (FDTD) method demonstrate that the transmittance at the center wavelength of the appropriate output port can reach 0.63 while those of the other two output ports are lower than 0.06. Through adjusting the slits spacing or optimizing the insulator material in the slits, the isolation of the circulator could be further improved with a slight sacrifice of the transmission. Such structure could also be used for wavelength demultiplexing with the center wavelength determined by the length of the bus waveguides and slits.
提出了一种基于金属-绝缘体-金属(MIM)的四端口准环行器,它由四个总线波导和八个窄的内外狭缝组成,无需使用非互易性。一旦定义了输入端口,通过适当设计波导和狭缝的参数,只能获得特定的输出端口。基于时域有限差分(FDTD)方法的仿真结果表明,合适输出端口中心波长处的透射率可达0.63,而其他两个输出端口的透射率低于0.06。通过调整狭缝间距或优化狭缝中的绝缘材料,环行器的隔离度可进一步提高,同时传输略有牺牲。这种结构也可用于波长解复用,中心波长由总线波导和狭缝的长度决定。