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These are especially useful to add a desired dissipation loss (an imaginary part of ε/μ) in a narrow bandwidth, without messing around with Lorentzian dispersive materials.
As the energy transfer at the joints is usually smaller than the dissipation loss in a structural member.
Alternatively, a dissipation loss or gain may be added by a positive or negative conductivity, respectively this is often convenient if you only care about the imaginary part of ε in a narrow bandwidth, and is described in detail below.
Results for a simple two plate configuration compare well with theory for the coupling loss and independent measurements for the dissipation loss factors.
An iteration technique is used to give estimates of the coupling loss factor and individual dissipation loss factors which provide the best fit to the experimental data.
Alternatively, a dissipation loss or gain may be added by a positive or negative conductivity, respectively&mdash this is often convenient if you only care about the imaginary part of ε in a narrow bandwidth, and is described in detail below.
Similar(49)
In the year of 2008, a research group from Boston College first designed the metamaterial absorber at the microwave region by making full use of the dissipation losses of the sandwich structure composed of electric ring resonator, lossy dielectric layer, and the metallic cut wire [6].
The dissipation and loss factors were calculated and discussed.
Performance of connections with respect to the energy dissipation and loss of strength under cyclic loads was also investigated.
It is shown that consideration of the unweighted contact network alone is insufficient to tie dissipation to loss of material connectivity.
It is shown that radiation damping is equivalent, in the low frequency limit, to a fictitious internal dissipation, with loss factor ηrad = (π2)[m′(m+m′)] k0a 2, where 2a is the strut thickness, m its mass per unit length and m′ the virtual fluid mass per unit length.
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