DocumentCode :
1884386
Title :
Loss concentration and evacuation by mini-wire-septa from circular machines for spallation neutron sources
Author :
Schonauer, H.
Author_Institution :
CERN, Geneva, Switzerland
Volume :
3
fYear :
1995
fDate :
1-5 May 1995
Firstpage :
1894
Abstract :
Efficient loss management is crucial in high-intensity circular machines like neutron sources, and those using superconducting magnets. Collimator systems have been designed or are under intensive study [1]. The common problem of collimation is the outscattering from the collimator faces which are most frequently hit at shallow depth. In this situation high collection efficiency can only be achieved by two-or-more-stage, double-jaw, systems requiring betatron phase advances approaching 2 π. As the outscattering is isotropic, both transverse planes are affected and the system layout becomes a two-dimensional problem. Any convincing single-stage collimation system would be simpler to operate and is likely to be less expensive. The possible physical evacuation of the lost beam towards a remote dump can drastically reduce the radioactivity level in the tunnel. Moreover, fitting a two-stage system into an existing machine is difficult and in general not very promising. In this situation a wire septum may be the only satisfactory solution
Keywords :
beam handling equipment; cyclic accelerators; neutron sources; particle accelerator accessories; particle accelerators; circular machines; collimator systems; evacuation; loss concentration; loss management; mini-wire-septa; outscattering; remote dump; single-stage collimation system; spallation neutron sources; superconducting magnets; Acceleration; Apertures; Cathodes; Collimators; Low voltage; Neutrons; Particle scattering; Polarization; Superconducting magnets; Wire;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Particle Accelerator Conference, 1995., Proceedings of the 1995
Conference_Location :
Dallas, TX
Print_ISBN :
0-7803-2934-1
Type :
conf
DOI :
10.1109/PAC.1995.505398
Filename :
505398
Link To Document :
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