DocumentCode
2623440
Title
Temperature studies for ATLAS MDT BOS chambers
Author
Engl, A. ; Hertenberger, R. ; Biebel, O. ; Mameghani, R. ; Merkl, D. ; Rauscher, F. ; Schaile, D. ; Strohmer, R.
Author_Institution
Ludwig-Maximilians University Munich, LS Schaile, Am Coulombwall 1, 85748 Garching, Germany
fYear
2008
fDate
19-25 Oct. 2008
Firstpage
2274
Lastpage
2277
Abstract
Data sets with high statistics taken at the cosmic ray facility, equipped with 3 ATLAS BOS MDT chambers, in Garching (Munich) have been used to study temperature and pressure effects on gas gain and drifttime. The deformation of a thermally expanded chamber was reconstructed using the internal RasNik alignment monitoring system and the tracks from cosmic data. For these studies a heating system was designed to increase the temperature of the middle chamber by up to 20 Kelvins over room temperature. For comparison the temperature effects on gas properties have been simulated with Garfield. The maximum drifttime decreased under temperature raise by −2.21 ± 0.08 ns/K, in agreement with the results of pressure variations and the Garfield simulation. The increased temperatures led to a linear increase of the gas gain of about 2.1% 1/K. The chamber deformation has been analyzed with the help of reconstructed tracks. By the comparison of the tracks through the reference chambers with these through the test chamber the thermal expansion has been reconstructed and the result shows agreement with the theoretical expansion coefficient. As the wires are fixed at the end of the chamber, the wire position calculation can not provide a conclusion for the chamber middle. The complete deformation has been identified with the analysis of the monitoring system RasNik, whose measured values have shown a homogeneous expansion of the whole chamber, overlayed by a shift and a rotation of the chamber middle with respect to the outer part of the chamber. The established results of both methods are in agreement. We present as well a model for the position-drifttime correction as function of temperature.
Keywords
Heating; Kelvin; Monitoring; Pressure effects; Rotation measurement; Statistics; Temperature distribution; Testing; Thermal expansion; Wires;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium Conference Record, 2008. NSS '08. IEEE
Conference_Location
Dresden, Germany
ISSN
1095-7863
Print_ISBN
978-1-4244-2714-7
Electronic_ISBN
1095-7863
Type
conf
DOI
10.1109/NSSMIC.2008.4774807
Filename
4774807
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