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- W2023500276 abstract "THE reflexion, transmission and absorption coefficients (R, T, A) of a thin metal film can be expressed in terms of its surface resistance S, if the frequency is low enough for classical electromagnetic theory to apply. Then measurements of R, T, or A yield theoretical values of S which can be compared with the value (S0) obtained from D.C. measurements on the film. Experiments of this type have been carried out1–3 at infra-red wave-lengths (6–110 µ); but while a measure of agreement has been obtained, the anomalies suggest that dispersion occurs at these short wave-lengths. With the view of effecting a similar comparison between S and S0 at centimetre wave-lengths, the theory has been investigated afresh4 to include the effect of multiple reflexions occurring in the film and its support, and has been extended to find the resonance condition for a cylindrical cavity resonator operating in the H01 mode, when it is loaded with a film of metal carried by a low-loss support travelling on the plunger. The theoretical value of the surface resistance is then given by the expression where λ is the wave-length in air, λ1 that in the empty resonator, while l1 and l1 are the resonant lengths of air space in front of the support in the presence and absence respectively of the film. In practice, λ is calculated from λ1 and a resonator dimension, while l1 may either be measured directly, or calculated from the thickness and permittivity of the film support." @default.
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- W2023500276 date "1948-04-01" @default.
- W2023500276 modified "2023-10-14" @default.
- W2023500276 title "Surface Resistance of Metal Films at a Frequency of 24,000 Mc./s" @default.
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- W2023500276 doi "https://doi.org/10.1038/161601a0" @default.
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