Jet structure from dihadron correlations in d + Au collisions at √sNN = 200 GeV
Physical Review C - Nuclear Physics 73 巻 5 号
054903-1-054903-27 頁
2006-05-10 発行
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ファイル情報(添付) |
PhysRevC_73_054903.pdf
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種類 :
全文
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タイトル ( eng ) |
Jet structure from dihadron correlations in d + Au collisions at √sNN = 200 GeV
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作成者 |
PHENIX Collaboration
Hachiya Takashi
Kohara Ryota
Nakamura Tomoaki
Tsuchimoto Yuji
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収録物名 |
Physical Review C - Nuclear Physics
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巻 | 73 |
号 | 5 |
開始ページ | 054903-1 |
終了ページ | 054903-27 |
抄録 |
Dihadron correlations at high transverse momentum pT in d+Au collisions at √sNN=200 GeV at midrapidity are measured by the PHENIX experiment at the Relativistic Heavy Ion Collider. From these correlations, we extract several structural characteristics of jets: the root-mean-squared transverse momentum of fragmenting hadrons with respect to the jet √〈jT2〉, the mean sine-squared of the azimuthal angle between the jet axes 〈sin2 φjj〉, and the number of particles produced within the dijet that are associated with a high-pT particle (dN/dxE distributions). We observe that the fragmentation characteristics of jets in d+Au collisions are very similar to those in p+p collisions and that there is little dependence on the centrality of the d+Au collision. This is consistent with the nuclear medium having little influence on the fragmentation process. Furthermore, there is no statistically significant increase in the value of 〈sin2 φjj〉 from p+p to d+Au collisions. This constrains the effect of multiple scattering that partons undergo in the cold nuclear medium before and after a hard collision.
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著者キーワード |
deuteron-nucleus reactions
proton-proton interactions
nuclei with mass number 190 to 219
elementary particle jets
nuclear fragmentation
nuclear matter
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言語 |
英語
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資源タイプ | 学術雑誌論文 |
出版者 |
American Physical Society
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発行日 | 2006-05-10 |
権利情報 |
Copyright (c) 2006 The American Physical Society.
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出版タイプ | Version of Record(出版社版。早期公開を含む) |
アクセス権 | オープンアクセス |
収録物識別子 |
[ISSN] 0556-2813
[DOI] 10.1103/PhysRevC.73.054903
[NCID] AA00773613
[DOI] http://dx.doi.org/10.1103/PhysRevC.73.054903
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