DocumentCode :
975771
Title :
Results From the ALICE Dipole Magnet Commissioning
Author :
Swoboda, D. ; de Almeida, C. ; Meynet, A. ; Taureg, H. ; Tournaire, A.
Author_Institution :
TS Dept., CERN, Geneva
Volume :
16
Issue :
2
fYear :
2006
fDate :
6/1/2006 12:00:00 AM
Firstpage :
1696
Lastpage :
1699
Abstract :
The ALICE experiment is being installed in point 2 of the future LHC at CERN. The experimental hall was previously used by a LEP experiment of which ALICE reuses the big L3 solenoid as the central detector magnet. The single arm forward muon spectrometer requires in addition a new dipole magnet with a very large aperture. This magnet has been developed and constructed and has now been installed in its final position. Since this location adjacent to the large L3 solenoid leads to important interference between both devices the dipole has previously been assembled and tested in a pre-assembly location before the final assembly and commissioning in 2005. The techniques and results of geometrical, thermal, electrical, magnetic and mechanical measurements in the final location are presented. These values are also compared to those measurements obtained during the pre-commissioning campaign when the magnet was tested in a stand-alone position. To provide the necessary data for the particle track analysis, the magnetic field of both magnets has been mapped in the entire detector space and also in the surrounding region where field sensitive electronics will be installed. Some relevant results are summarized
Keywords :
muon detection; particle spectrometers; particle track visualisation; position sensitive particle detectors; superconducting magnets; ALICE dipole magnet commissioning; CERN; L3 solenoid; LEP experiment; central detector magnet; electrical measurements; field sensitive electronics; future LHC; geometrical measurements; magnetic measurements; mechanical measurements; particle track analysis; single arm forward muon spectrometer; thermal measurements; Apertures; Assembly; Detectors; Interference; Large Hadron Collider; Magnetic field measurement; Mesons; Solenoids; Spectroscopy; Testing;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2006.870794
Filename :
1643187
Link To Document :
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