Abstract

A theoretical model describing the resonant frequencies of a tunable optoelectronic oscillator on the optical and spin-wave delay lines is presented. In the theoretical model, the optical delay line has two configurations. The first configuration was formed by parallel connection of optical waveguides having various lengths. The second one is the serial connection of optical waveguides closed in rings. The transmission characteristics for the generators of both configurations are obtained. The paper presents the results of numerical simulations of transmission characteristics for circuits containing one, two and three optical delay lines. The results are compared for cases of parallel and serial connection.

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