标题: | 使用等效电路模型设计奈米表面电浆子元件 Nanoplasmonic devices by use of the equivalent circuit model |
作者: | 张郁欣 Chang,Yuh-Sin 陈琼华 Chen,Chyong-Hua 光电工程研究所 |
关键字: | 波导;带止滤波器;功率分光器;表面电浆子元件;等效电路模型;电浆晶片;Waveguide;Bandstop filter;Power splitter;Plasmonic device;Equivalent circuit model;Plasmonic integrated circuit |
公开日期: | 2015 |
摘要: | 本论文发展了一套用来分析奈米表面电浆子系统的等效电路模型,并且利用此模型来提出三个适用于晶片通讯应用的奈米表面电浆子元件。在等效电路模型中,我们建构了电压源电路来表示金属-介电质-金属(MIM) 奈米表面电浆子系统的输入波,并基于传输线理论,使用了对称T型电路来描述有限长度MIM 波导,将所建构的等效电路经电路分析后,可获得此奈米表面电浆子电浆系统的设计参数和光谱响应。接着,我们利用此电路模型来建构三个具有单一直接相连矩形环共振结构的奈米表面电浆子元件,第一个奈米表面电浆子元件为宽频带止滤波器,其平坦的阻带可藉操作双埠共振腔内的环共振波长和马氏干涉波长来实现,并且呈现了一个带止边缘波长为1300奈米和1800奈米和元件尺寸为200奈米#westeur024#522奈米的元件设计;另两个奈米表面电浆子元件为三埠不等功率分光器,其中一个不等功率分光器为调整直接相连矩形环共振结构的输出波导宽度,而另一个则为于共振腔及相同宽度的输出波导间,插入具有不同宽度比例的四分之一波长波导,当目标分光比为0.5时,基于前者的设计概念,所获得不等分光器的元件尺寸为275奈米#westeur024#550奈米,而基于后者的设计概念,所获得不等分光器的元件尺寸为275奈米#westeur024#1150奈米。 We developed an equivalent circuit model to analyze nanoplasmonic systems and used this model to propose three nanoplasmonic devices for the application of on-chip communications. In this equivalent circuit model, we established a source generator circuit to represent the incidence wave in a metal-insulator-metal (MIM) nanoplasmonic system and used symmetric T-shaped equivalent circuits to describe a finite-length MIM waveguide based on the transmission line theory. Then, the design parameters and the spectral responses of this system could be obtained by using electric circuit analysis based on the implemented equivalent circuit. Subsequently, we used this circuit model to construct three nanoplasmonic devices with a single directly-connected rectangular ring resonator. The first was a broadband bandstop filter whose flat stop band is obtained by manipulating the resonant wavelengths of ring resonance and Mach-Zehnder interference in a two-port resonator. A design example with stopband edge wavelengths of 1300 nm and 1800 nm and dimensions of 200 nm #westeur024# 522 nm was demonstrated. The others were three-port unequal power splitters. One was designed by adjusting the output waveguide widths of the directly-connected resonator while the other was obtained by inserting quarter-wavelength waveguides with different width ratio between the resonator and output waveguides with the same widths. The power splitter with splitting ratio of 0.5 based on the former design concept had the dimensions of were shown with of 275 nm #westeur024# 550 nm, and that based on the latter design concept had dimensions of 275 nm #westeur024# 1150 nm. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079924801 http://hdl.handle.net/11536/125997 |
显示于类别: | Thesis |