Title :
Microstrip circuit analog to illustrate extraordinary transmission through compound diffraction gratings
Author :
Medina, Francisco ; Fernandez-Prieto, Armando ; Mesa, Francisco
Author_Institution :
Dept. of Electron. & Electromagn., Univ. of Seville, Seville, Spain
fDate :
Sept. 29 2009-Oct. 1 2009
Abstract :
This contribution presents a microstrip implementation of a system exhibiting an electromagnetic response that mimics the response of compound diffraction gratings investigated in the optics community. The transmission response of periodic structures of this kind has attracted a lot of attention in the frame of the so called extraordinary transmission phenomena. Recently, some of the authors have developed physical explanations based on standard transmission line and waveguide theory. This paper shows that, conversely, phenomena observed in the optics frame can be replicated with transmission line and circuit analogs. The identification of such analogies are very fruitful for the understanding of the phenomena but also for the development of design strategies to build practical devices based on such phenomena. This paper shows circuit analogs, traditionally used to explain many physical phenomena, providing physical insight and a pedagogical introduction to extraordinary transmission phenomena.
Keywords :
analogue circuits; diffraction gratings; microstrip circuits; optical waveguides; periodic structures; transmission lines; compound diffraction gratings; electromagnetic response; extraordinary transmission; microstrip circuit analog; optics community; optics frame; pedagogical introduction; periodic structures; transmission response; waveguide theory; Diffraction gratings; Distributed parameter circuits; Electromagnetic diffraction; Electromagnetic waveguides; Microstrip; Optical diffraction; Optical waveguides; Periodic structures; Standards development; Transmission line theory;
Conference_Titel :
Microwave Conference, 2009. EuMC 2009. European
Conference_Location :
Rome
Print_ISBN :
978-1-4244-4748-0