Journal
SCIENTIFIC REPORTS
Volume 11, Issue 1, Pages -Publisher
NATURE PORTFOLIO
DOI: 10.1038/s41598-021-04293-6
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This study presents the quasi-electrostatic theory of wave propagation in a long rectangular waveguide filled with an anisotropic medium based on nanowire hyperbolic metamaterials. The results include field configurations, cutoff frequencies, group velocities, power flows, and storage energies supported by such structures.
The electrostatic (or, in a better word, quasi-electrostatic) theory of waves propagation in a long, rectangular waveguide having perfect electric conductor walls that filled with an anisotropic medium (here, a medium of nanowire-based hyperbolic metamaterials) is presented. Some data on characteristics of these waves are prepared. The presented results include electrostatic field configurations (modes) that can be supported by such structures and their corresponding cutoff frequencies, group velocities, power flows and storage energies.
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