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  1. NTU Theses and Dissertations Repository
  2. 電機資訊學院
  3. 光電工程學研究所
Please use this identifier to cite or link to this item: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/35154
Title: 以有限差分時域法分析微共振器與金屬次波長孔隙結構
Finite-Difference Time-Domain Analysis of Microresonators and Metallic Subwavelength Aperture Structures
Authors: Yao-Jen Liu
劉耀仁
Advisor: 張宏鈞(Hung-Chun Chang)
Keyword: 有限差分時域法,微共振器,次波長孔隙,
FDTD,Microresonator,Subwavelength Aperture,
Publication Year : 2005
Degree: 碩士
Abstract: 本篇論文採用有限差分時域法為數值模型模擬研究數種不同的元件,並以數學動機推導之完美匹配層作為吸收邊界的處理。首先分析波導耦合圓形微共振腔以及方形微共振腔。在分析微共振腔的同時我們亦針對格點配置的問題做了探討,期能使模型更接近真實情形。討論中發現,將格點中的電場安置在邊界上並將該格點的折射率取為邊界兩邊的平均值,在我們分析的例子中能得到最好的結果。其次,我們討論了表面電漿和金屬次波長孔隙的電磁波穿透問題,之後便著手分析一些光波段以及微波段的次波長孔隙的元件。其中有限差分數值分析使用了Drude色散模型來模擬金屬,在模擬中可以觀察到當表面電漿被激發時,波穿過孔隙穿透率的增強以及指向性。除了元件的研究,我們也提出了以非線性色散模型修改的完美匹配層。當模擬波在非線性色散介質中的行為時,此修改過的完美匹配層可以安置在計算空間的周圍,以有效地吸收往外擴散的波以模擬無限大的空間。
In this research, the finite-difference time-domain (FDTD) method is employed to simulate several categories of devices with the appearance of the mathematic motivated perfectly matching layer (PML) around the computational
domain. First, the micro-ring and square micro-ring resonators are analyzed. The issue of proper grid arrangement over the modelled structures for efficient numerical convergence is discussed. We discover that putting the electric field grid just at the boundary of dielectric interfaces and taking the index average of the grid provide the best results in the cases we concern.
Two geometries of micro-ring resonator coupled by straight waveguides are simulated with the slab index of 3.2 and the cladding index of 1.0. Second, the surface plasmons (SPs) and the metallic subwavelength apertures are discussed. Several structures are analyzed by imposing the Drude model for material dispersion into the FDTD scheme to model the metal in the optical and microwave ranges. The enhancement of transmittance and the directional property are shown through the simulations. Beside simulation of various devices, we also implement a PML modified by nonlinear and dispersive model. The modified PML can be used to truncate the computational domain of modelling a nonlinear-dispersive medium to properly absorb the outgoing waves.
URI: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/35154
Fulltext Rights: 有償授權
Appears in Collections:光電工程學研究所

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