Quantitative metamaterial property extraction
We examine an extraction model for metamaterials, not previously reported, that gives precise, quantitative and causal representation of S parameter data over a broad frequency range, up to frequencies where the free space wavelength is only a modest factor larger than the unit cell dimension. The m...
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Zusammenfassung: | We examine an extraction model for metamaterials, not previously reported,
that gives precise, quantitative and causal representation of S parameter data
over a broad frequency range, up to frequencies where the free space wavelength
is only a modest factor larger than the unit cell dimension. The model is
comprised of superposed, slab shaped response regions of finite thickness, one
for each observed resonance. The resonance dispersion is Lorentzian and thus
strictly causal. This new model is compared with previous models for
correctness likelihood, including an appropriate Occam's factor for each fit
parameter. We find that this new model is by far the most likely to be correct
in a Bayesian analysis of model fits to S parameter simulation data for several
classic metamaterial unit cells. |
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DOI: | 10.48550/arxiv.1509.00873 |