Accès ouvert déclaré
2025
article
Measurement of directed flow in Au+Au collisions at sNN=19.6 and 27 GeV with the STAR event plane detector
M. I. Abdulhamid, B. E. Aboona, J. Adam, Lidia Adamczyk, J. R. Adams, M. M. Aggarwal, Z. Ahammed, E. C. Aschenauer, S. Aslam, J. Atchison, V. Bairathi, J. G. Ball Cap, K. N. Barish, R. Bellwied, P. Bhagat, A. Bhasin, S. Bhatta, S. R. Bhosale, J. Bielčík, J. Bielčíková, J. D. Brandenburg, C. Broodo, X. Z. Cai, H. Caines, M. Calderón de la Barca Sánchez, D. Cebra, J. Ceska, I. Chakaberia, P. Chaloupka, B. K. Chan, Z. Chang, A. Chatterjee, D. Chen, J. Chen, Jingqi Chen, Z. Chen, J. Cheng, Y. Cheng, W. Christie, X. Chu, H. J. Crawford, M. Csanád, G. Dale-Gau, A. Das, I. M. Deppner, A. Dhamija, P. Dixit, X. Dong, J. L. Drachenberg, E. Duckworth, J. C. Dunlop, J. Engelage, G. Eppley, S. Esumi, O. Evdokimov, O. Eyser, S. Fazio, C. Feng, Y. Feng, E. Finch, Y. Fisyak, F. Flor, Chuancheng Fu, C. A. Gagliardi, T. Galatyuk, T. Gao, F. J. M. Geurts, N. Ghimire, A. Gibson, K. Gopal, X. Gou, D. Grosnick, A. Gupta, W. Guryn, A. Hamed, Y. Han, S. Harabasz, M. D. Harasty, John William Harris, H. Harrison-Smith, Weihua He, X. H. He, Y. He, N. Herrmann, L. Holub, Chenguo Hu, Q. Hu, Y. Hu, H. Z. Huang, H. Z. Huang, S. L. Huang, T. Huang, Y. Huang, Y. Huang, T. J. Humanic, M. Isshiki, W. W. Jacobs, A. Jalotra, C. Jena, A. Jentsch, Y. Ji, J. Jia, Chao Jin, X. Ju, E. G. Judd, S. Kabana, D. Kalinkin, K. Kang, D. Kapukchyan, K. Kauder, D. Keane, A. Khanal, Y. V. Khyzhniak, D. P. Kikoła, D. Kincses, I. Kisel, A. Kiselev, A. G. Knospe, H. S. Ko, J. Kołaś, L. K. Kosarzewski, L. Kumar, M. C. Labonte, R. Lacey, J. M. Landgraf, J. Lauret, A. Lebedev, J. H. Lee, Y. H. Leung, Changqiao Li, D. Li, H.-S. Li, H. Li, W. Li, X. Li, Y. Li, Z. Li, X. Liang, Y. T. Liang, R. Licenik, T. Lin, Y. Lin, M. A. Lisa, C. Liu, Guoming Liu, H. Liu, L. Liu, T. Liu, X. Liu, Y. Liu, Z. Liu, T. Ljubicic, O. Lomicky, R. S. Longacre, E. Loyd, T. Lu, Junzhou Luo, X. F. Luo, L. Ma, R. Ma, Y. G., Y. G., D. Mallick, R. Manikandhan, S. Margetis, C. Markert, O. Matonoha, G. McNamara, O. Mezhanska, K Mi, S. Mioduszewski, B. Mohanty, B. Mondal, M. M. Mondal, I. Mooney, J. Mrazkova, M. I. Nagy, A. S. Nain, J. D. Nam, Md. Nasim, D. Neff, J. M. Nelson, M. Nie, G. Nigmatkulov, T. Niida, T. Nonaka, G. Odyniec, A. Ogawa, S. Oh, K. Okubo, B. S. Page, S. Pal, A. Pandav, A. K. Panday, A. K. Pandey, T. Pani, Ayan Paul, B. Pawlik, D. Pawłowska, C. Perkins, J. Pluta, B. R. Pokhrel, M. Posik, T. L. Protzman, V. Prozorova, N. K. Pruthi, M. Przybycień, J. Putschke, H. R. Qi, Hongbo Qiu, C. Racz, S. K. Radhakrishnan, Abhishek Rana, R. L. Ray, R. Reed, C. W. Robertson, M. Robotkova, M. A. Rosales Aguilar, D. Roy, P. Chowdhury, A. K. Sahoo, N. R. Sahoo, H. Sako, S. Salur, Shunsuke Sato, Brian C. Schaefer, W. B. Schmidke, N. Schmitz, F. Seck, Janet Elizabeth Seger, R. Seto, P. Seyboth, N. Shah, P. V. Shanmuganathan, T. Shao, M. Sharma, N. Sharma, R. Sharma, Sayantan Sharma, A. I. Sheikh, Deyuan Shen, D. Y. Shen, K. Shen, S. S. Shi, Yufeng Shi, Q. Y. Shou, F. Si, J. B. Singh, S. Singha, P. Sinha, M. J. Skoby, N. Smirnov, Y. Söhngen, Y. Song, B. Srivastava, T. D. S. Stanislaus, M. Stefaniak, D. J. Stewart, Yanjing Su, M. Šumbera, ChuanLe Sun, X. Sun, Y. Sun, B. Surrow, M. Svoboda, Z. W. Sweger, A. C. Tamis, Z. Tang, Zebo Tang, T. Tarnowsky, J. H. Thomas, A. R. Timmins, D. Tlusty, T. Todoroki, S. Trentalange, P. Tribedy, S. K. Tripathy, T. Truhlar, B. A. Trzeciak, O. D. Tsai, C. Y. Tsang, Z. Tu, J. Tyler, T. Ullrich, D. G. Underwood, I. Upsal, G. Van Buren, J. Vanek, I. Vassiliev, V. Verkest, F. Videbæk, S. A. Voloshin, G. Wang, J. S. Wang, J. Wang, K. Wang, X. Wang, Y. Wang, Y. Wang, Yuhua Wang, Z. Wang, J. C. Webb, P. C. Weidenkaff, G. D. Westfall, D. Wielanek, H. Wieman, G. Wilks, S. W. Wissink, R. Witt, Jianbin Wu, Jia-Jun Wu, Xin Wu, B. Xi, Z. G. Xiao, Guangming Xie, W. Xie, X. Xu, N. Xu, W. Xu, Y. Xu, Q. Xu, Zhao Yan, C. Yang, Qi Yang, S. Yang, Y. Yang, Z. Ye, Z. Ye, L. Yi, Y. Yu, H. Zbroszczyk, W. Zha, C. Zhang, D. Zhang, J. Zhang, S. Zhang, W. Zhang, X. Zhang, Y. Zhang, Z. J. Zhang, Z. Zhang, Fengyi Zhao, J. Zhao, M. G. Zhao, S. Zhou, Y. Zhou, X. L. Zhu, M. Źurek, M. Zyzak
2Citations signalées, ce qui n’est pas une note de qualité
67Institutions déclarées
13Pays d’affiliation déclarés
Rattachement africain : Égypte, us, cz, pl, in, hu, cn, de, jp, it, tw, kr, uz.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
In heavy-ion collision experiments, the global collectivity of final-state particles can be quantified by anisotropic flow coefficients $({v}_{n})$. The first-order flow coefficient, also referred to as the directed flow $({v}_{1})$, describes the collective sideward motion of produced particles and nuclear fragments in heavy-ion collisions. It carries information on the very early stage of the collision, especially at large pseudorapidity $(\ensuremath{\eta})$, where it is believed to be generated during the nuclear passage time. Directed flow therefore probes the onset of bulk collective dynamics during thermalization, providing valuable experimental guidance to models of the pre-equilibrium stage. In 2018, the Event Plane Detector (EPD) was installed in STAR and used for the Beam Energy Scan phase-II (BES-II) data taking. The combination of EPD $(2.1<|\ensuremath{\eta}|<5.1)$ and high-statistics BES-II data enables us to extend the ${v}_{1}$ measurement to the forward and backward $\ensuremath{\eta}$ regions. In this paper, we present the measurement of ${v}_{1}$ over a wide $\ensuremath{\eta}$ range in $\mathrm{Au}+\mathrm{Au}$ collisions at $\sqrt{{s}_{NN}}=$ 19.6 and 27 GeV using the STAR EPD. The results of the analysis at $\sqrt{{s}_{NN}}=$ 19.6 GeV exhibit excellent consistency with the previous PHOBOS measurement, while elevating the precision of the overall measurement. The increased precision of the measurement also revealed finer structures in heavy-ion collisions, including a potential observation of the first-order event-plane decorrelation. Multiple physics models were compared to the experimental results. Only a transport model and a three-fluid hybrid model can reproduce a sizable ${v}_{1}$ at large $\ensuremath{\eta}$ as was observed experimentally. The model comparison also indicates ${v}_{1}$ at large $\ensuremath{\eta}$ might be sensitive to the QGP phase transition.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.
- Titre Crossref
- Measurement of directed flow in
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collisions at
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and 27 GeV with the STAR event plane detector
- Date Crossref
- 09/01/2025
- Éditeur
- American Physical Society (APS)
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
High-Energy Particle Collisions ResearchNuclear reactor physics and engineeringParticle physics theoretical and experimental studies