Split Coaxial Cable Medium for Tunable Artificial Dielectrics and Plasmas
Alexander Zhuravlev, Jim A. Enriquez, Pavel A. Belov, Juan D. Baena
Abstract
We introduce the Split Coaxial Cable Medium (SCCM), a mechanically tunable, capacitively loaded wire medium supporting artificial-dielectric and artificial-plasma Bloch regimes with high in-plane isotropy. Its unit cell comprises coaxial conductors interrupted by axial gaps. Relative axial displacement continuously varies their capacitive overlap and series capacitance while preserving the transverse lattice geometry and leaving the unit-cell inductance approximately unchanged. Equivalent RLC parameters are derived directly from the geometry and incorporated into complementary analytical models. A spatially dispersive local-field model predicts the Bloch dispersion and isofrequency contours, whereas a multilayer homogenization model provides the modal impedance, closed-form estimates of the low-frequency Bloch refractive index and plasma frequency, and loss-inclusive finite-slab scattering. Full-wave eigenmode and finite-slab simulations validate the predictions. Over the investigated displacement range, simulations yield tunabilities of 46\% in the low-frequency Bloch refractive index, from n0,=1.42 to n0,=2.28, and 21\% in the plasma frequency, from fp,=9.45~GHz to fp,=11.61~GHz, while confirming high in-plane isotropy near the Γ point in both regimes. These characteristics make the SCCM promising for gradient-index devices, directive antennas, and tunable plasma haloscopes.
Create a lesson
Related papers
A Scaling Framework for Mechanical Memristance: Dimensionless Metrics and Material Design Maps
Abdulla Alhembar, Fabrizio Scarpa, Chrystel D. L. Remillat et al.
Fast, optimal readout of a tethered optomechanical pressure sensor
Stephen R. Chen, Yiliang Bao, John R. Lawall et al.
Pushing the Dose Limit of Atomic-Resolution Imaging: A 4D-STEM case study of NaCl
Tamazouzt Chennit, Arno Annys, Songge Li et al.
A Review of ERA5 Equatorial Wind Data and Impact on a Space Elevator
Blaise Gassend, Jonathan Gassend
Shape- and Cation-Engineered Ferrite Nanoparticles for Enhanced Theranostic Performance in Ovarian Cancer Tumor-Mimicking Phantom
Bahareh Rezaei, Md Shahriar, Shahriar Mostufa et al.
Bimorph Lithium Niobate Thickness-Shear Overtone Film Bulk Acoustic Resonator
Ziqian Yao, Ian Anderson, Tzu-Hsuan Hsu et al.