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ANALYSIS OF MULTIJET FINAL-STATES IN E+E- ANNIHILATION

Abstract:
Data accumulated by the TASSO detector across the whole range of energies spanned at PETRA, 12≤ s≤46.8 GeV, have been analysed in terms of cluster algorithms. Using parameters optimised at 35 GeV CM energy, three perturbative QCD+fragmentation models were compared with the data. The O(αs2) model gives too few 4,5- cluster events, implying that higher order QCD contributions are required to describe the data. The parton cascade model, incorporating many orders in perturbation theory, gives a better description of the rates of ≥ 4 clusters, but shows a lack of hard gluon emission by giving too few 3-, and too many 2-cluster events. When hard gluon emission is taken into account, by the cascade model incorporating the O(αs) matrix element, all cluster rates are reproduced well. All the models describe the trend of the evolution of the cluster rates between 〈 s〉 = 14 and 43.8 GeV. We find that the rate of 3-jet events seen in the data decreases as s increases in a manner consistent with the Q2 dependence of αs as predicted by QCD. © 1988.
Publication status:
Published

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Publisher copy:
10.1016/0370-2693(88)91484-0

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Journal:
Physics Letters B More from this journal
Volume:
214
Issue:
2
Pages:
286-294
Publication date:
1988-11-17
DOI:
ISSN:
0370-2693


Language:
English
Pubs id:
pubs:2152
UUID:
uuid:bdbb0621-0d7f-4358-abc1-69f308a3722c
Local pid:
pubs:2152
Source identifiers:
2152
Deposit date:
2012-12-19

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