Accès ouvert déclaré
2025
preprint
Low-mass vector-meson production at forward rapidity in $p$$+$$p$ and Au$+$Au collisions at $\sqrt{s_{_{NN}}}=200$~GeV
U. Rajendra Acharya, A Adare, C. Aidala, Y. Akiba, M. Alfred, D. M. Anderson, V Andrieux, S Antsupov, N Apadula, Hitoshi Asano, B. Azmoun, V Babintsev, M. Bai, B. Bannier, E Bannikov, S. Bathe, A Bazilevsky, M. Beaumier, S. Beckman, R. Belmont, A. Berdnikov, Y. Berdnikov, L. Bichon, B. Blankenship, V Borisov, K Boyle, J Bryslawskyj, V. Bumazhnov, S Campbell, R Cervantes, P Chaitanya, D Chen, Mau-Sen Chiu, T. Chujo, Z. H. Citron, M. Connors, R Corliss, N. Cronin, M Csanád, T. Csörgő, Amaresh Datta, Guillaume David, K. DeBlasio, K. Dehmelt, Alexander Denisov, A. Deshpande, A. Dion, Dhruv Utpalkumar Dixit, V Doomra, A. Drees, A. Durum, H. En’yo, A Enokizono, R. Esha, B. Fadem, N. Feege, M. Finger, D. Firak, D Fitzgerald, A. Franz, Y. Fukuda, P. Gallus, C. Gal, P. Garg, H. Ge, F. Giordano, A. Glenn, Y. Goto, N. Grau, M. Große Perdekamp, T. Gunji, Tingting Guo, H. Guragain, T. Hachiya, H. Hamagaki, J. Hanks, Sunao Hasegawa, K. Hashimoto, Xin He, K. W. Hill, A. Hodges, Kensuke Homma, B. Hong, T. Hoshino, N. Hotvedt, J. Huang, Koji Imai, M. Inaba, A Iordanova, D. Isenhower, D. Ivanishchev, M. Jezghani, X. Jiang, Z. Ji, D. Jouan, S. Kanda, D. Kapukchyan, S. Karthas, Gyula Kasza, D. Kawall, V. Khachatryan, A. Khanzadeev, B. Kimelman, C. Kim, M. Kim, D. Kincses, E Kistenev, R. Kitamura, J. Klatsky, D. Kleinjan, P. Kline, T Koblesky, B. Komkov, D. Kotov, Levente Kovács, S Kudo, K. Kurita, M. Kurosawa, Y. Kwon, D. Larionova, A. Lebedev, Seung‐Chul Lee, X. Li, K. Lovasz, D. Lynch, S. Lökòs, T. Majoros, M. Makek, A. Manion, E. Mannel, M. McCumber, D. McGlinchey, Collin McKinney, A. Meles, Michael Mendoza, A. Milov, M. Mitrankova, Iu. Mitrankov, G. Mitsuka, S Miyasaka, Shigeru Mizuno, P Montuenga, T. Moon, B. Mulilo, T. Murakami, J. Murata, A. Mwai, K. Nagai, K. Nagashima, T. Nagashima, I. Nakagawa, Hiroshi Nakagomi, K. Nakano, C. Nattrass, T. Niida, S. Nishimura, R. Nouicer, N. Novitzky, Tomáš Novák, G. Nukazuka, Edward R. O’Brien, M. Orosz, A. Oskarsson, K. Ozawa, R. Pak, V. Pantuev, V. Papavassiliou, S Park, M. Patel, John Oliver Perry, R. Petti, M. Phipps, C Pinkenburg, R. Pinson, M. Potekhin, J. Rak, I. Ravinovich, D. Reynolds, V. Riabov, Y. Riabov, D. Richford, T. Rinn, M. Rosati, Z. Rowan, B Sahlmueller, N. Saito, T. Sakaguchi, H. Sako, V. Samsonov, M Sarsour, S. Sato, B. Schaefer, K. Sedgwick, R. Seidl, А. В. Селезнев, A. Sen, R. Seto, P. Sett, A. Sexton, D. Sharma, I. Shein, K. Shigaki, M. Shimomura, Tatsuro Shioya, P. Shukla, A. Sickles, D. Silvermyr, V. Singh, M. Slunečka, M. Snowball, M Stepanov, T. Sugitate, A. Sukhanov, T. Sumita, Jian Sun, Z. Sun, J. Sziklai, A. Taketani, K. Tanida, S. Tarafdar, A. Taranenko, G. Tarnai, R. Tieulent, A. Timilsina, T. Todoroki, M Tomášek, I. Tserruya, Y. Ueda, B. Ujvari, J. Velkovska, Miroslav Virius, V. Vrba, N. Vukman, F. Wei, M. Wysocki, B. Xia, L. Xue, Chaoshui Xu, Q. Xu, Ş. Yalçın, H. Yamamoto, A. Yanovich, I. Yoon, Hong Yu, A. Zelenski, S. Zhou, L. Zou
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2Institutions déclarées
1Pays d’affiliation déclarés
Rattachement africain : fr.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
The PHENIX experiment at the Relativistic Heavy Ion Collider has measured low-mass vector-meson ($ω+ρ$ and $ϕ$) production through the dimuon decay channel at forward rapidity $(1.2<|\mbox{y}|<2.2)$ in $p$$+$$p$ and Au$+$Au collisions at $\sqrt{s_{_{NN}}}=200$~GeV. The low-mass vector-meson yield and nuclear-modification factor were measured as a function of the average number of participating nucleons, $\langle N_{\rm part}\rangle$, and the transverse momentum $p_T$. These results were compared with those obtained via the kaon decay channel in a similar $p_T$ range at midrapidity. The nuclear-modification factors in both rapidity regions are consistent within the uncertainties. A comparison of the $ω+ρ$ and $J/ψ$ mesons reveals that the light and heavy flavors are consistently suppressed across both $p_T$ and ${\langle}N_{\rm part}\rangle$. In contrast, the $ϕ$ meson displays a nuclear-modification factor consistent with unity, suggesting strangeness enhancement in the medium formed.
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Les sujets associés
High-Energy Particle Collisions ResearchParticle physics theoretical and experimental studies