2006Applied Physics LettersRequires access

Transmission filtering of a waveguide coupled to a stub microresonator

Y. Pennec, Bahram Djafari‐Rouhani, Abdellatif Akjouj, J. O. Vasseur, L. Dobrzyński, Jean‐Pierre Vilcot, M. Beaugeois, Mohamed Bouazaoui, R. Fikri, J. P. Vigneron

Open publisher page 10 citations

Abstract

Using a finite difference time domain method, the authors study the electromagnetic transmission coefficient of a microwaveguide coupled to a lateral stub. It is shown that if the stub is covered with a thin metallic layer, the transmission spectrum contains several very narrow and deep depressions despite the small size of the resonator. The frequencies of the zeros of transmission are studied as a function of the geometrical parameters of the stub. The quality factor of the dips is increased when the waveguide is separated from the stub by a small air gap.

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What this paper is about

Using a finite difference time domain method, the authors study the electromagnetic transmission coefficient of a microwaveguide coupled to a lateral stub. It is shown that if the stub is covered with a thin metallic layer, the transmission spectrum contains several very narrow and deep depressions despite the small size of the resonator. The frequencies of the zeros of transmission are studied as a function of the geometrical parameters of the stub. The quality factor of the dips is increased when the waveguide is separated from the stub by a small air gap.

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Available abstract

Using a finite difference time domain method, the authors study the electromagnetic transmission coefficient of a microwaveguide coupled to a lateral stub. It is shown that if the stub is covered with a thin metallic layer, the transmission spectrum contains several very narrow and deep depressions despite the small size of the resonator. The frequencies of the zeros of transmission are studied as a function of the geometrical parameters of the stub. The quality factor of the dips is increased when the waveguide is separated from the stub by a small air gap.

Key concepts: Stub (electronics), Transmission coefficient, Resonator, Materials science, Optics, Optoelectronics, Physics, Transmission (telecommunications)

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