Characteristics of a sector of the endcap hadron calorimeter for the CMS facility

P. I. Goncharov, V. V. Abramov, G. Bencze, A. A. Volkov, A. G. Volod'ko, I. A. Golutvin, A. A. Zaichenko, A. V. Zarubin, A. V. Korablev, Yu P. Korneev, I. G. Kosarev, A. N. Krinitsyn, V. I. Kryshkin, D. Lazic, A. A. Markov, V. V. Talov, L. K. Turchanovich

Research output: Contribution to journalArticle

3 Citations (Scopus)

Abstract

The characteristics of the prototype of the endcap hadron calorimeter for the CMS facility have been measured. Using the relations between the measured calorimeter response to a radiation source, muons, and pions, it is possible to determine the energy scale of the data-acquisition electronics, which will be used in future experiments along with the calorimeter. The light yield in the calorimeter due to a minimum-ionizing particle was measured. The effect of various factors on the duration of the calorimeter signal is analyzed. The joint operation of the hadron and electromagnetic calorimeters was investigated. The possibility of adjusting the uncompensated system using the data from a scintillation counter inserted between the calorimeters is analyzed. It is shown that the presence of a structural material between the calorimeters will not lead to a noticeable degradation in the energy resolution of the hadron calorimeter.

Original languageEnglish
Pages (from-to)55-60
Number of pages6
JournalPribory i Tekhnika Eksperimenta
Issue number1
Publication statusPublished - 2004

Fingerprint

Calorimeters
calorimeters
sectors
Scintillation counters
radiation sources
scintillation counters
data acquisition
muons
Data acquisition
pions
Electronic equipment
adjusting
prototypes
degradation
electromagnetism
Radiation
Degradation
energy
electronics

ASJC Scopus subject areas

  • Instrumentation

Cite this

Goncharov, P. I., Abramov, V. V., Bencze, G., Volkov, A. A., Volod'ko, A. G., Golutvin, I. A., ... Turchanovich, L. K. (2004). Characteristics of a sector of the endcap hadron calorimeter for the CMS facility. Pribory i Tekhnika Eksperimenta, (1), 55-60.

Characteristics of a sector of the endcap hadron calorimeter for the CMS facility. / Goncharov, P. I.; Abramov, V. V.; Bencze, G.; Volkov, A. A.; Volod'ko, A. G.; Golutvin, I. A.; Zaichenko, A. A.; Zarubin, A. V.; Korablev, A. V.; Korneev, Yu P.; Kosarev, I. G.; Krinitsyn, A. N.; Kryshkin, V. I.; Lazic, D.; Markov, A. A.; Talov, V. V.; Turchanovich, L. K.

In: Pribory i Tekhnika Eksperimenta, No. 1, 2004, p. 55-60.

Research output: Contribution to journalArticle

Goncharov, PI, Abramov, VV, Bencze, G, Volkov, AA, Volod'ko, AG, Golutvin, IA, Zaichenko, AA, Zarubin, AV, Korablev, AV, Korneev, YP, Kosarev, IG, Krinitsyn, AN, Kryshkin, VI, Lazic, D, Markov, AA, Talov, VV & Turchanovich, LK 2004, 'Characteristics of a sector of the endcap hadron calorimeter for the CMS facility', Pribory i Tekhnika Eksperimenta, no. 1, pp. 55-60.
Goncharov PI, Abramov VV, Bencze G, Volkov AA, Volod'ko AG, Golutvin IA et al. Characteristics of a sector of the endcap hadron calorimeter for the CMS facility. Pribory i Tekhnika Eksperimenta. 2004;(1):55-60.
Goncharov, P. I. ; Abramov, V. V. ; Bencze, G. ; Volkov, A. A. ; Volod'ko, A. G. ; Golutvin, I. A. ; Zaichenko, A. A. ; Zarubin, A. V. ; Korablev, A. V. ; Korneev, Yu P. ; Kosarev, I. G. ; Krinitsyn, A. N. ; Kryshkin, V. I. ; Lazic, D. ; Markov, A. A. ; Talov, V. V. ; Turchanovich, L. K. / Characteristics of a sector of the endcap hadron calorimeter for the CMS facility. In: Pribory i Tekhnika Eksperimenta. 2004 ; No. 1. pp. 55-60.
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AU - Goncharov, P. I.

AU - Abramov, V. V.

AU - Bencze, G.

AU - Volkov, A. A.

AU - Volod'ko, A. G.

AU - Golutvin, I. A.

AU - Zaichenko, A. A.

AU - Zarubin, A. V.

AU - Korablev, A. V.

AU - Korneev, Yu P.

AU - Kosarev, I. G.

AU - Krinitsyn, A. N.

AU - Kryshkin, V. I.

AU - Lazic, D.

AU - Markov, A. A.

AU - Talov, V. V.

AU - Turchanovich, L. K.

PY - 2004

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AB - The characteristics of the prototype of the endcap hadron calorimeter for the CMS facility have been measured. Using the relations between the measured calorimeter response to a radiation source, muons, and pions, it is possible to determine the energy scale of the data-acquisition electronics, which will be used in future experiments along with the calorimeter. The light yield in the calorimeter due to a minimum-ionizing particle was measured. The effect of various factors on the duration of the calorimeter signal is analyzed. The joint operation of the hadron and electromagnetic calorimeters was investigated. The possibility of adjusting the uncompensated system using the data from a scintillation counter inserted between the calorimeters is analyzed. It is shown that the presence of a structural material between the calorimeters will not lead to a noticeable degradation in the energy resolution of the hadron calorimeter.

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