DocumentCode :
819759
Title :
Operational characteristics of a GEM-MSGC system for X-ray detection
Author :
Mir, J.A. ; Derbyshire, G.E. ; Stephenson, R. ; Rhodes, N.J. ; Schooneveld, E.M. ; Veloso, J.F.C.A. ; Dos Santos, J.M.F. ; Spooner, N. ; Lawson, T.B. ; Lightfoot, P.K.
Author_Institution :
Eng. & Instrum. Dept., CCLRC Rutherford Appleton Lab., Chilton
Volume :
52
Issue :
6
fYear :
2005
Firstpage :
2927
Lastpage :
2931
Abstract :
We report a recent study undertaken at the Council for the Central Laboratory of the Research Councils (CCLRC) Rutherford Appleton Laboratory to evaluate the performance of a gas electron multiplier (GEM) coupled with a microstrip gas counter (MSGC) for X-ray spectroscopy. The parameters investigated during this study were effective gain, effective gain stability, and energy resolution at 8.05 keV using Cu-K X-rays. These parameters were studied as a function of drift field, induction field, and potential differences across the GEM holes and that across the MSGC anodes and cathodes. This study demonstrates that a single stage GEM can sustain effective gains up to 6000 whilst retaining adequate X-ray energy resolution. By utilizing the MSGC as well as the GEM amplification the gains easily exceed 100 000 and allow the MSGC operation at much lower voltages. This study also demonstrates that the introduction of the GEM preamplification to the MSGC enables the operation of the latter at much higher effective gains (30 000) before any degradation in the X-ray energy resolution
Keywords :
X-ray detection; X-ray spectroscopy; anodes; cathodes; electron multiplier detectors; position sensitive particle detectors; Cu-K X-rays; GEM; MSGC; Rutherford Appleton Laboratory; X-ray detection; X-ray energy resolution; X-ray spectroscopy; anodes; cathodes; drift field; effective gain stability; gas electron multiplier; induction field; microstrip gas counter; operational characteristics; potential difference; Anodes; Councils; Counting circuits; Electron multipliers; Energy resolution; Laboratories; Microstrip; Spectroscopy; Stability; X-ray detection; Energy resolution; GEM; MSGC; X-ray; gain stability;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2005.862803
Filename :
1589301
Link To Document :
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