Research paperTheoreticalTerahertz plasmonic resonances in coplanar graphene nanoribbon structuresV. Ryzhii, C. Tang, T. Otsuji, M. Ryzhii et al.2024·10.1063/5.0202637·arXiv:2402.03912AbstractWe analyze plasmonic oscillations in coplanar graphene nanoribbon structures induced by applied terahertz signals and calculate the GNR impedance. The analysis shows that relatively low inter-GNR capacitance can enable resonant excitation of THz plasmonic oscillations in long graphene nanoribbons, with possible application in THz detectors, sources, photomixers, and sensors.Read more
Research paperTheoreticalTerahertz plasmonic resonances in coplanar graphene nanoribbon structuresV. Ryzhii, C. Tang, T. Otsuji, M. Ryzhii et al.2024·10.1063/5.0202637·arXiv:2402.03912AbstractWe analyze plasmonic oscillations in coplanar graphene nanoribbon structures induced by applied terahertz signals and calculate the GNR impedance. The analysis shows that relatively low inter-GNR capacitance can enable resonant excitation of THz plasmonic oscillations in long graphene nanoribbons, with possible application in THz detectors, sources, photomixers, and sensors.Read more
Research paperTheoreticalTerahertz plasmonic resonances in coplanar graphene nanoribbon structuresV. Ryzhii, C. Tang, T. Otsuji, M. Ryzhii et al.2024·10.1063/5.0202637·arXiv:2402.03912AbstractWe analyze plasmonic oscillations in coplanar graphene nanoribbon structures induced by applied terahertz signals and calculate the GNR impedance. The analysis shows that relatively low inter-GNR capacitance can enable resonant excitation of THz plasmonic oscillations in long graphene nanoribbons, with possible application in THz detectors, sources, photomixers, and sensors.Read more
Research paperTheoreticalTerahertz plasmonic resonances in coplanar graphene nanoribbon structuresV. Ryzhii, C. Tang, T. Otsuji, M. Ryzhii et al.2024·10.1063/5.0202637·arXiv:2402.03912AbstractWe analyze plasmonic oscillations in coplanar graphene nanoribbon structures induced by applied terahertz signals and calculate the GNR impedance. The analysis shows that relatively low inter-GNR capacitance can enable resonant excitation of THz plasmonic oscillations in long graphene nanoribbons, with possible application in THz detectors, sources, photomixers, and sensors.Read more