Kuzmenko, A., Mukhin, A. A., Shuvaev, A., Pimenov, A., & Szaller, D. (2025). Asymmetric absorption at custom wavelengths via a layered magnetoelectric window. Physical Review B, 112, Article 134434. https://doi.org/10.1103/tq6k-tkcc
The controllable nonreciprocal propagation of light is an intensively investigated field of optics, with studies motivated both by fundamental questions and possible telecommunication applications. So far, polarization-independent, switchable one-way transparency has been demonstrated only at certain resonances of multiferroic crystals at cryogenic temperatures and in high magnetic fields, limiting the practical implementation of this effect. Here, as an alternative approach, we present the one-way transparency of an artificial layered structure consisting of split-ring metamaterial and magnetic substrate layers interacting in the dynamic regime. As evident from our quasioptical experiments in the GHz frequency range, this unique combination breaks time and space inversion symmetries in external magnetic field. The ease of tuning the dynamic response and the possibility of controllable one-way transparency make this approach promising for real-world applications.
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Project title:
Neue topologische Zustände in Multiferroika: PAT7680623 (FWF - Österr. Wissenschaftsfonds) Neue magnetoelektrische Phänomene aus Zusammenspiel lokaler und globaler Symmetrien: I 5539-N (FWF - Österr. Wissenschaftsfonds)
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Project (external):
Russian Science Foundation Hungarian Academy of Sciences National Research, Development and Innovation Office of Hungary Austria's Agency for Education and Internationalisation
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Project ID:
25–79–30006 BO-00580/22/11 2023-1.2.4-TÉT-2023-00051 WTZ HU 02/2024
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Research Areas:
Special and Engineering Materials: 40% Composite Materials: 40% Modeling and Simulation: 20%