DocumentCode
781937
Title
Field decay and snapback measurements using a fast Hall plate detector
Author
Haverkamp, M. ; Bottura, L. ; Benedico, E. ; Sanfilippo, S. ; Ten Haken, B. ; ten Kate, H.H.J.
Author_Institution
CERN, Geneva, Switzerland
Volume
12
Issue
1
fYear
2002
fDate
3/1/2002 12:00:00 AM
Firstpage
86
Lastpage
89
Abstract
In superconducting particle accelerators significant changes occur in tune and chromaticity during the injection of particles and their subsequent acceleration. This behavior is caused by the decay of magnetic field components in the superconducting accelerator magnets during injection and their so-called "snapback" to the original hysteresis curve during the first few seconds after the start of the energy ramp. The two effects are closely related to a spatially periodic modulation of all field components along the magnet axis. In order to avoid a loss of particles the sextupole component in the dipoles has to be compensated with a very high accuracy. Standard magnetic measurements using rotating coils do not have the time resolution required to completely resolve the snapback. For this reason we have developed a fast system for sextupole measurements consisting of three Hall plates mounted on a ring. A new calibration procedure for the first time allows quantitative results. The detector is used to measure decay and snapback as a function of several parameters in the operation cycle. The results obtained help to better understand the interaction between current distribution and magnetization in the coil.
Keywords
Hall effect devices; accelerator magnets; calibration; particle beam diagnostics; particle beam injection; superconducting magnets; calibration procedure; chromaticity; fast Hall plate detector; field decay measurements; hysteresis curve; injection; sextupole measurements; snapback measurements; spatially periodic modulation; superconducting particle accelerators; Acceleration; Accelerator magnets; Coils; Detectors; Linear particle accelerator; Magnetic field measurement; Magnetic hysteresis; Magnetic modulators; Spatial resolution; Superconducting magnets;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2002.1018357
Filename
1018357
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