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Bimodal Resonance Phenomena-Part I: Generalized Fabry-Pérot Interferometers
The operation of several optical components, such as high-contrast gratings, is based on the interference between two oscillation modes. Therefore, this paper is devoted to the complete characterization of bimodal Fabry-Pérot interferometers, which can effectively model such two-mode interactions....
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Published in: | IEEE journal of quantum electronics 2016-12, Vol.52 (12), p.1-8 |
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description | The operation of several optical components, such as high-contrast gratings, is based on the interference between two oscillation modes. Therefore, this paper is devoted to the complete characterization of bimodal Fabry-Pérot interferometers, which can effectively model such two-mode interactions. Thanks to a novel parameterization of the mirror scattering matrices, this paper presents for the first time explicit expressions of the bimodal interferometer response, proving phenomena such as 100% reflection peaks, and predicting their positions. For this reason, this paper, which complements-rather than replaces-the existing numerical techniques, provides a completely new perspective on high-contrast gratings. |
doi_str_mv | 10.1109/JQE.2016.2623270 |
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subjects | Cavity resonators Fabry-Pérot interferometers Gratings Interferometers Mirrors multimode waveguides resonance Scattering scattering parameters Symmetric matrices Transmission line matrix methods |
title | Bimodal Resonance Phenomena-Part I: Generalized Fabry-Pérot Interferometers |
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