isosurface loss density simulation Search Results


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COMSOL Inc isosurface loss density simulation
a Complex dielectric constant of the samples (real red and imaginary blue). b Cole-Cole curves of 2D-Co@NC-C. c Cole-Cole curves of 2D-Co@NC-D. d 2D reflection loss plots of 2D-Co@NC-C at 1–5 mm thickness. e Reflection loss plots of 2D-Co@NC-C in different frequency bands. f 2D reflection loss shadow plots of 2D-Co@NC-C at 1–5 mm thickness. g Reflection loss plots of 2D-Co@NC-C in different frequency bands. h Schematic diagrams of the multiscale modulation polarization response (from left to right, the N-doped charge differential densities. Blue-green color represents charge depletion, while yellow color represents charge accumulation. The ordered array <t>isosurface</t> loss densities and the shell-structure isosurface loss densities). i RCS simulation plots of PEC, 2D-Co@NC-D and 2D-Co@NC-C. j Radar cross-section data of the samples.
Isosurface Loss Density Simulation, supplied by COMSOL Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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a Complex dielectric constant of the samples (real red and imaginary blue). b Cole-Cole curves of 2D-Co@NC-C. c Cole-Cole curves of 2D-Co@NC-D. d 2D reflection loss plots of 2D-Co@NC-C at 1–5 mm thickness. e Reflection loss plots of 2D-Co@NC-C in different frequency bands. f 2D reflection loss shadow plots of 2D-Co@NC-C at 1–5 mm thickness. g Reflection loss plots of 2D-Co@NC-C in different frequency bands. h Schematic diagrams of the multiscale modulation polarization response (from left to right, the N-doped charge differential densities. Blue-green color represents charge depletion, while yellow color represents charge accumulation. The ordered array isosurface loss densities and the shell-structure isosurface loss densities). i RCS simulation plots of PEC, 2D-Co@NC-D and 2D-Co@NC-C. j Radar cross-section data of the samples.

Journal: Nature Communications

Article Title: Interfacial coupling effects in two-dimensional ordered arrays for microwave attenuation

doi: 10.1038/s41467-024-55776-9

Figure Lengend Snippet: a Complex dielectric constant of the samples (real red and imaginary blue). b Cole-Cole curves of 2D-Co@NC-C. c Cole-Cole curves of 2D-Co@NC-D. d 2D reflection loss plots of 2D-Co@NC-C at 1–5 mm thickness. e Reflection loss plots of 2D-Co@NC-C in different frequency bands. f 2D reflection loss shadow plots of 2D-Co@NC-C at 1–5 mm thickness. g Reflection loss plots of 2D-Co@NC-C in different frequency bands. h Schematic diagrams of the multiscale modulation polarization response (from left to right, the N-doped charge differential densities. Blue-green color represents charge depletion, while yellow color represents charge accumulation. The ordered array isosurface loss densities and the shell-structure isosurface loss densities). i RCS simulation plots of PEC, 2D-Co@NC-D and 2D-Co@NC-C. j Radar cross-section data of the samples.

Article Snippet: It could be found by COMSOL isosurface loss density simulation that the loss of the ordered arrays was concentrated at the neighboring interfaces.

Techniques: