Multijet production rates in neutral current deep inelastic scattering have been measured in the range of exchanged boson virtualities 10 < Q(2) < 5000 GeV(2). The data were taken at the ep collider HERA with centre-of-mass energy root s = 318 GeV using the ZEUS detector and correspond to an integrated luminosity of 82.2 pb(-1). Jets were identified in the Breit frame using the k(T) cluster algorithm in the longitudinally invariant inclusive mode. Measurements of differential dijet and trijet cross sections are presented as functions of jet transverse energy (E(T,B)(jet)), pseudorapitidy (eta(jet)(LAB)) and Q(2) with E(T,B)(jet) > 5 GeV and -1 < eta(jet)(LAB) < 2.5. Next-to-leading- order QCD calculations describe the data well. The value of the strong coupling constant alpha(s)(M(Z)), determined from the ratio of the trijet to dijet cross sections, is alpha(s)(M(Z)) = 0.1179 +/- 0.0013 (stat.)(-0.0046)(+0.0028) (th.).

Multijet production rates in neutral current deep inelastic scattering have been measured in the range of exchanged boson virtualities 10 < Q(2) < 5000 GeV(2). The data were taken at the ep collider HERA with centre-of-mass energy root s = 318 GeV using the ZEUS detector and correspond to an integrated luminosity of 82.2 pb(-1). Jets were identified in the Breit frame using the k(T) cluster algorithm in the longitudinally invariant inclusive mode. Measurements of differential dijet and trijet cross sections are presented as functions of jet transverse energy (E(T,B)(jet)), pseudorapitidy (eta(jet)(LAB)) and Q(2) with E(T,B)(jet) > 5 GeV and -1 < eta(jet)(LAB) < 2.5. Next-to-leading- order QCD calculations describe the data well. The value of the strong coupling constant alpha(s)(M(Z)), determined from the ratio of the trijet to dijet cross sections, is alpha(s)(M(Z)) = 0.1179 +/- 0.0013 (stat.)(-0.0046)(+0.0028) (th.).

Multijet production in neutral current deep inelastic scattering at HERA and determination of alpha(s)

CAPUA, Marcella;MASTROBERARDINO, Anna;Schioppa M;TASSI, Enrico;
2005-01-01

Abstract

Multijet production rates in neutral current deep inelastic scattering have been measured in the range of exchanged boson virtualities 10 < Q(2) < 5000 GeV(2). The data were taken at the ep collider HERA with centre-of-mass energy root s = 318 GeV using the ZEUS detector and correspond to an integrated luminosity of 82.2 pb(-1). Jets were identified in the Breit frame using the k(T) cluster algorithm in the longitudinally invariant inclusive mode. Measurements of differential dijet and trijet cross sections are presented as functions of jet transverse energy (E(T,B)(jet)), pseudorapitidy (eta(jet)(LAB)) and Q(2) with E(T,B)(jet) > 5 GeV and -1 < eta(jet)(LAB) < 2.5. Next-to-leading- order QCD calculations describe the data well. The value of the strong coupling constant alpha(s)(M(Z)), determined from the ratio of the trijet to dijet cross sections, is alpha(s)(M(Z)) = 0.1179 +/- 0.0013 (stat.)(-0.0046)(+0.0028) (th.).
2005
Multijet production rates in neutral current deep inelastic scattering have been measured in the range of exchanged boson virtualities 10 < Q(2) < 5000 GeV(2). The data were taken at the ep collider HERA with centre-of-mass energy root s = 318 GeV using the ZEUS detector and correspond to an integrated luminosity of 82.2 pb(-1). Jets were identified in the Breit frame using the k(T) cluster algorithm in the longitudinally invariant inclusive mode. Measurements of differential dijet and trijet cross sections are presented as functions of jet transverse energy (E(T,B)(jet)), pseudorapitidy (eta(jet)(LAB)) and Q(2) with E(T,B)(jet) > 5 GeV and -1 < eta(jet)(LAB) < 2.5. Next-to-leading- order QCD calculations describe the data well. The value of the strong coupling constant alpha(s)(M(Z)), determined from the ratio of the trijet to dijet cross sections, is alpha(s)(M(Z)) = 0.1179 +/- 0.0013 (stat.)(-0.0046)(+0.0028) (th.).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11770/126849
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