Standards and Measurements of Microwave Surface Impedance, Skin Depth, Conductivity and Q
Standards and Measurements of Microwave Surface Impedance, Skin Depth, Conductivity and Q
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微波表面阻抗、趋肤深度、电导率和 Q 值的标准和测量
DOI:
10.1109/ire-i.1960.5006910
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发表时间:
1960
期刊:
影响因子:
--
通讯作者:
H. Bussey
中科院分区:
文献类型:
--
作者:
H. Bussey
172 IRE TRANSACTIONS ON INSTRUMENTATION September onator is probably the most convenient observable. tions are understood to be apparent values when a The complex propagation constant in a waveguide also transition layer is present. may be used. Surface loss measurements by these tech- The influence of the wall impedance on the resonance niques have been made since microwaves came into properties of a cavity may be obtained by perturbation common use. Surface losses were surveyed by Allison theory. The cavity is regarded as unperturbed when the and Benson,'and recently by von Baeyer. 2 The com-conductivity is infinite so that Z* is zero. The effect of plex surface impedance has been of interest in velocity finite conductivity is then regarded as a perturbation of light measurements, 3 and in magnetic research. 4 of the complex frequency of the resonator,*, defined This paper discusses resonant cavity methods for the as cw*= w+ jf/2Q. Experimental measurements of w* determination of Z8. The main emphasis has been on can yield Z*.(The complex propagation constant of a the determination of an absolute loss standard, ie, on transmission line may be similarly treated.) Application standardizing the realpart of ZB for a nonmagnetic of Bethe's' cavity perturbation equation in complex metal. The losses of other materials may be quicklyform, and separation intoreal and imaginary parts, determined relative to this standard; in addition, such a yields a frequency shift and a Q as follows, resulting standard may be used as a basis for making complex fromthe cavity wall impedance. permeability determinations.