Beginning with Maxwell’s equations and assuming only that the wall interaction can be approximated by a surface impedance, we derive formulas for the generalized longitudinal and transverse impedance in flat geometry, from which the wakefields can also be obtained. From the generalized impedances, by taking the proper limits, we obtain the normal longitudinal, dipole, and quad impedances in flat geometry. These equations can be applied to any surface impedance, such as the known dc, ac, and anomalous skin models of wall resistance, a model of wall roughness, or one for a pipe with small, periodic corrugations. We show that, for the particular case of dc wall resistance, the longitudinal impedance obtained here agrees with a known result in ...
Based on the parabolic equation approach to Maxwell’s equations, we have derived scaling properties ...
Simple analytical formulas are introduced for the grid impedance of electrically dense arrays of squ...
Effect of the wall resistivity is rigorously taken into account in the calculations of the impedance...
We calculate the longitudinal impedance for small obstacles of arbitrary shape located on the surfac...
We calculate the longitudinal impedance for small obstacles of arbitrary shape located on the surfac...
The transverse resistive wall impedance is calculated for arbitrary multi-layer vacuum chambers with...
The transverse resistive wall impedance is calculated for arbitrary multi-layer vacuum chambers with...
The resistive wall impedance is usually calculated assuming the skin depth being much smaller than t...
The resistive wall impedance is usually calculated as-suming the skin depth being much smaller than ...
The resistive wall impedance of cylindrical vacuum chambers was first calculated over 40 years ago. ...
The resistive wall impedance of a vacuum chamber with elliptic cross section is of particular intere...
We present an algorithm for calculating the impedance of infinitely long beam pipes with arbitrary c...
The beam impedance of monopole modes in a pipe with periodic, smooth and shallow corrugation has bee...
Coupling impedances are most often calculated for beam enclosures of circular cross section, and res...
Coupling impedances are most often calculated for beam enclosures of circular cross-section,and resu...
Based on the parabolic equation approach to Maxwell’s equations, we have derived scaling properties ...
Simple analytical formulas are introduced for the grid impedance of electrically dense arrays of squ...
Effect of the wall resistivity is rigorously taken into account in the calculations of the impedance...
We calculate the longitudinal impedance for small obstacles of arbitrary shape located on the surfac...
We calculate the longitudinal impedance for small obstacles of arbitrary shape located on the surfac...
The transverse resistive wall impedance is calculated for arbitrary multi-layer vacuum chambers with...
The transverse resistive wall impedance is calculated for arbitrary multi-layer vacuum chambers with...
The resistive wall impedance is usually calculated assuming the skin depth being much smaller than t...
The resistive wall impedance is usually calculated as-suming the skin depth being much smaller than ...
The resistive wall impedance of cylindrical vacuum chambers was first calculated over 40 years ago. ...
The resistive wall impedance of a vacuum chamber with elliptic cross section is of particular intere...
We present an algorithm for calculating the impedance of infinitely long beam pipes with arbitrary c...
The beam impedance of monopole modes in a pipe with periodic, smooth and shallow corrugation has bee...
Coupling impedances are most often calculated for beam enclosures of circular cross section, and res...
Coupling impedances are most often calculated for beam enclosures of circular cross-section,and resu...
Based on the parabolic equation approach to Maxwell’s equations, we have derived scaling properties ...
Simple analytical formulas are introduced for the grid impedance of electrically dense arrays of squ...
Effect of the wall resistivity is rigorously taken into account in the calculations of the impedance...