Title :
Pulse propagation in photonic crystal Multimode Interference waveguides using time doma in beam-propagation method
Author :
Nihei, Hiroshige ; Takakura, Yoshinori ; Chen, Chun-Ping ; Anada, Tetsuo ; Ma, Zhewang
Author_Institution :
Dept of Electr. Eng., Kanagawa Univ., Yokohama, Japan
Abstract :
This paper presents an efficient technique for simulation of time-domain pulse propagation of Multimode Interference waveguides in two-dimensional electromagnetic band gap (EBG) structures. Photonic Band Gap (or Electromagnetic Band Gap) and frequency-selective structures will be widely applied to the various (sub) millimeter and Terahertz components such as compact and low-loss filters, directional coupler and power divider. 2D photonic crystal multimode interference devices having a square/triangular lattice pattern of periodic air holes in a planar dielectric slab are numerically considered. ADIM-based TD-BPM with Pade(1, 1) approximation will be discussed through numerical examples in (1 times N) MMI circuits with photonic crystal structures. A good equivalent model is applied to analysis the designed structures on the basis of multimode interference effect and self-imaging principle.
Keywords :
light propagation; optical waveguide filters; photonic crystals; power dividers; 2D electromagnetic band gap; directional coupler; low-loss filters; multimode interference effect; multimode interference waveguides; photonic crystal; power divider; pulse propagation; self-imaging; terahertz components; time domain beam propagation; Electromagnetic interference; Electromagnetic propagation; Electromagnetic transients; Electromagnetic waveguides; Metamaterials; Periodic structures; Photonic band gap; Photonic crystals; Time domain analysis; Waveguide discontinuities; ADIM; EBG; MMI device; PBG; Pade(1, 1) approximation; TD-BPM;
Conference_Titel :
Microwave Symposium Digest, 2009. MTT '09. IEEE MTT-S International
Conference_Location :
Boston, MA
Print_ISBN :
978-1-4244-2803-8
Electronic_ISBN :
0149-645X
DOI :
10.1109/MWSYM.2009.5165698