Structures for Superconducting Electron Linacs and RF Separators
- 1 June 1969
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Transactions on Nuclear Science
- Vol. 16 (3) , 1092-1103
- https://doi.org/10.1109/tns.1969.4325445
Abstract
Some basic principles underlying the design of structures suitable for superconducting electron linacs and RF separators are discussed. It is shown that the shunt impedance can be written as the product of two factors, one related to the shape of the individual cavities in the structure, and the other to the field flatness. Typical standing-wave structures are discussed, with emphasis on the ratio of peak-to-average field. The problem of field flatness is analysed using a coupled chain of resonant circuits. Results are given for the variation in field flatness with loss and detuning for the ¿/2 and ¿ modes. Travelling wave resonators are also of interest, since they give the highest gradient for a given peak field. It is shown that such a resonator must be matched with great precision, or substantial power will flow in the reverse direction. Other factors which enter into the design of superconducting structures, such as coupling, thermal and mechanical stability, and beam break-up, are briefly considered.Keywords
This publication has 7 references indexed in Scilit:
- Electron Emission from Regions of High Resistance in Tin Oxide FilmsJournal of Applied Physics, 1968
- Coupled Resonator Model for Standing Wave Accelerator TanksReview of Scientific Instruments, 1967
- Accelerating Structures for Superconducting Electron LinacsIEEE Transactions on Nuclear Science, 1967
- Low Temperature Aspects of a Cryogenic AcceleratorIEEE Transactions on Nuclear Science, 1967
- Computer Designed 805 MHz Proton Linac CavitiesReview of Scientific Instruments, 1966
- Resonantly Coupled Accelerating Structures for High-Current Proton LinacsIEEE Transactions on Nuclear Science, 1965
- A Waveguide Resonant Ring Electron AcceleratorIEEE Transactions on Nuclear Science, 1965