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H. Bethe (1944)
Theory of Diffraction by Small HolesPhysical Review, 66
James Wait (1976)
Electromagnetic Theory of the Loosely Braided Coaxial Cable: Part IIEEE Transactions on Microwave Theory and Techniques, 24
D. Hill, James Wait (1980)
Electromagnetic Theory of the Loosely Braided Coaxial Cable: Part II--Numerical ResultsIEEE Transactions on Microwave Theory and Techniques, 28
K. Lee, C. Baum (1975)
Application of Modal Analysis to Braided-Shield CablesIEEE Transactions on Electromagnetic Compatibility, EMC-17
R. Smedt, J. Bladel (1980)
Magnetic polarizability of some small aperturesIEEE Transactions on Antennas and Propagation, 28
J. Bladel (1979)
Field penetration through small apertures: The first‐order correctionRadio Science, 14
J. Bladel (1970)
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R. Mersereau, T. Speake (1983)
The processing of periodically sampled multidimensional signalsIEEE Transactions on Acoustics, Speech, and Signal Processing, 31
F. Meulenaere, J. Bladel (1977)
Polarizability of some small aperturesIEEE Transactions on Antennas and Propagation, 25
D. Hill, James Wait (1980)
Electromagnetic characteristics of a coaxial cable with periodic slotsIEEE Transactions on Electromagnetic Compatibility, EMC-22
The theory of scattering of electromagnetic waves by a small hole in a conducting screen is reviewed in order to identify the key elements of the problem. Then attention is turned to holes in the shield of a coaxial cable and to leaky feeders. The engineering model currently used is described. Integral equations for the electric field in the apertures are established. The cases of a single hole and of a periodic distribution of holes are examined, and suggestions are made for the numerical solution of the problem.
Radio Science – Wiley
Published: Dec 1, 1987
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