Study of a novel electromagnetic liquid argon calorimeter — the TGT

The concept and the basic design of a fast, highly granular and compact electromagnetic liquid argon calorimeter are described. This novel calorimeter offers uniform energy response and constant energy resolution independent of the production angle of an impinging particle and of its impact position...

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Published inNuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment Vol. 357; no. 2; pp. 333 - 343
Main Authors Berger, C., Braunschweig, W., Geulig, E., Schöntag, M., Siedling, R., Wlochal, M., Putzer, A., Wotschack, J., Cheplakov, A., Feshchenko, A., Kazarinov, M., Kukhtin, V., Ladygin, E., Obudovskij, V., Geweniger, C., Hanke, P., Kluge, E.-E., Krause, J., Schmidt, M., Stenzel, H., Tittel, K., Wunsch, M., Zerwas, D., Bruncko, D., Jusko, A., Kocper, B., Lupták, M., Aderholz, M., Bán, J., Brettel, H., Dydak, F., Fent, J., Frey, H., Huber, J., Jakobs, K., Kiesling, C., Kiryunin, A.E., Oberlack, H., Ribarics, P., Schacht, P., Stiegler, U., Bogolyubsky, M.Y., Buyanov, O.V., Chekulaev, S.V., Kurchaninov, L.L., Levitsky, M.S., Maximov, V.V., Minaenko, A.A., Moiseev, A.M., Semenov, P.A., Tikhonov, V.V., Straumann, U.
Format Journal Article
LanguageEnglish
Published Elsevier B.V 21.04.1995
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Summary:The concept and the basic design of a fast, highly granular and compact electromagnetic liquid argon calorimeter are described. This novel calorimeter offers uniform energy response and constant energy resolution independent of the production angle of an impinging particle and of its impact position at the calorimeter. An example of a calorimeter with full rapidity coverage in an application in a collider detector is given. An important aspect of the concept is the electronics for fast signal processing matched to the short charge collection time. We report on the experience with the realization of a prototype calorimeter module and on its performance in a testbeam exposure.
ISSN:0168-9002
1872-9576
DOI:10.1016/0168-9002(95)00012-7