Prospects for Very High Gradient Linac-Colliders
- 1 June 1981
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Transactions on Nuclear Science
- Vol. 28 (3) , 2742-2748
- https://doi.org/10.1109/tns.1981.4331899
Abstract
The energy realistically attainable by an electron-positron storage ring is limited by the RF voltage and power requirements imposed by synchrotron radiation to about 100 GeV. To reach energies of 300 × 300 GeV and higher in a colliding beam machine of reasonable dimensions, we must look to the linac-collider operating at an energy gradient on the order of 100 MV/m. Proper choice of an RF structure for such a collider can minimize the total RF power requirement and the effects of longitudinal and transverse single-bunch beam loading. For an operating frequency in the range 4-6 GHz, the total RF power requirement for a 300 × 300 GeV collider with a luminosity of 1032 cm-2s-1 accelerating 1011 particles per bunch is on the order of 50 MW. To drive this collider, RF power sources are needed having a peak output power in the range 1-2 GW. Possibilities for attaining these peak power levels by direct generation and by energy storage and fast switching are discussed.Keywords
This publication has 8 references indexed in Scilit:
- Microwave energy compression using a high-intensity electron beam switchJournal of Applied Physics, 1980
- Transverse Wake Field Effects on Intense Bunches with Application to the SLAC Linear ColliderPublished by Springer Nature ,1980
- Longitudinal and Transverse Wake Potentials in SLACPublished by Springer Nature ,1980
- RF Systems and Accelerating Structures for Linear CollidersPublished by Springer Nature ,1980
- Pulsed RF Systems for Large Storage RingsIEEE Transactions on Nuclear Science, 1979
- Microwave power gain utilizing superconducting resonant energy storageApplied Physics Letters, 1978
- Standing Wave High Gradient Accelerator StructureIEEE Transactions on Nuclear Science, 1977
- Bar Loaded Waveguide for Accelerator ServiceIEEE Transactions on Nuclear Science, 1971