- Main
Observation of Excess J/ψ Yield at Very Low Transverse Momenta in Au+Au Collisions at sNN=200 GeV and U+U Collisions at sNN=193 GeV
- Adam, J;
- Adamczyk, L;
- Adams, JR;
- Adkins, JK;
- Agakishiev, G;
- Aggarwal, MM;
- Ahammed, Z;
- Alekseev, I;
- Anderson, DM;
- Aoyama, R;
- Aparin, A;
- Arkhipkin, D;
- Aschenauer, EC;
- Ashraf, MU;
- Atetalla, F;
- Attri, A;
- Averichev, GS;
- Bairathi, V;
- Barish, K;
- Bassill, AJ;
- Behera, A;
- Bellwied, R;
- Bhasin, A;
- Bhati, AK;
- Bielcik, J;
- Bielcikova, J;
- Bland, LC;
- Bordyuzhin, IG;
- Brandenburg, JD;
- Brandin, AV;
- Bryslawskyj, J;
- Bunzarov, I;
- Butterworth, J;
- Caines, H;
- Sánchez, M Calderón de la Barca;
- Cebra, D;
- Chakaberia, I;
- Chaloupka, P;
- Chan, BK;
- Chang, F-H;
- Chang, Z;
- Chankova-Bunzarova, N;
- Chatterjee, A;
- Chattopadhyay, S;
- Chen, JH;
- Chen, X;
- Cheng, J;
- Cherney, M;
- Christie, W;
- Crawford, HJ;
- Csanad, M;
- Das, S;
- Dedovich, TG;
- Deppner, IM;
- Derevschikov, AA;
- Didenko, L;
- Dilks, C;
- Dong, X;
- Drachenberg, JL;
- Dunlop, JC;
- Edmonds, T;
- Elsey, N;
- Engelage, J;
- Eppley, G;
- Esha, R;
- Esumi, S;
- Evdokimov, O;
- Ewigleben, J;
- Eyser, O;
- Fatemi, R;
- Fazio, S;
- Federic, P;
- Fedorisin, J;
- Feng, Y;
- Filip, P;
- Finch, E;
- Fisyak, Y;
- Fulek, L;
- Gagliardi, CA;
- Galatyuk, T;
- Geurts, F;
- Gibson, A;
- Grosnick, D;
- Gupta, A;
- Guryn, W;
- Hamad, AI;
- Hamed, A;
- Harris, JW;
- He, L;
- Heppelmann, S;
- Heppelmann, S;
- Herrmann, N;
- Holub, L;
- Hong, Y;
- Horvat, S;
- Huang, B;
- Huang, HZ;
- Huang, SL;
- Huang, T;
- Huang, X;
- Humanic, TJ;
- Huo, P;
- Igo, G;
- Jacobs, WW;
- Jentsch, A;
- Jia, J;
- Jiang, K;
- Jowzaee, S;
- Ju, X;
- Judd, EG;
- Kabana, S;
- Kagamaster, S;
- Kalinkin, D;
- Kang, K;
- Kapukchyan, D;
- Kauder, K;
- Ke, HW;
- Keane, D;
- Kechechyan, A;
- Kelsey, M;
- Kikoła, DP;
- Kim, C;
- Kinghorn, TA;
- Kisel, I;
- Kisiel, A;
- Kocan, M;
- Kochenda, L;
- Kosarzewski, LK;
- Kramarik, L;
- Kravtsov, P;
- Krueger, K;
- Mudiyanselage, N Kulathunga;
- Kumar, L;
- Elayavalli, R Kunnawalkam;
- Kwasizur, JH;
- Lacey, R;
- Landgraf, JM;
- Lauret, J;
- Lebedev, A;
- Lednicky, R;
- Lee, JH;
- Li, C;
- Li, W;
- Li, W;
- Li, X;
- Li, Y;
- Liang, Y;
- Licenik, R;
- Lin, T;
- Lipiec, A;
- Lisa, MA;
- Liu, F;
- Liu, H;
- Liu, P;
- Liu, P;
- Liu, X;
- Liu, Y;
- Liu, Z;
- Ljubicic, T;
- Llope, WJ;
- Lomnitz, M;
- Longacre, RS;
- Luo, S;
- Luo, X;
- Ma, GL;
- Ma, L;
- Ma, R;
- Ma, YG;
- Magdy, N;
- Majka, R;
- Mallick, D;
- Margetis, S;
- Markert, C;
- Matis, HS;
- Matonoha, O;
- Mazer, JA;
- Meehan, K;
- Mei, JC;
- Minaev, NG;
- Mioduszewski, S;
- Mishra, D;
- Mohanty, B;
- Mondal, MM;
- Mooney, I;
- Moravcova, Z;
- Morozov, DA;
- Nasim, Md;
- Nayak, K;
- Nelson, JM;
- Nemes, DB;
- Nie, M;
- Nigmatkulov, G;
- Niida, T;
- Nogach, LV;
- Nonaka, T;
- Odyniec, G;
- Ogawa, A;
- Oh, K;
- Oh, S;
- Okorokov, VA;
- Page, BS;
- Pak, R;
- Panebratsev, Y;
- Pawlik, B;
- Pei, H;
- Perkins, C;
- Pinter, RL;
- Pluta, J;
- Porter, J;
- Posik, M;
- Pruthi, NK;
- Przybycien, M;
- Putschke, J;
- Quintero, A;
- Radhakrishnan, SK;
- Ramachandran, S;
- Ray, RL;
- Reed, R;
- Ritter, HG;
- Roberts, JB;
- Rogachevskiy, OV;
- Romero, JL;
- Ruan, L;
- Rusnak, J;
- Rusnakova, O;
- Sahoo, NR;
- Sahu, PK;
- Salur, S;
- Sandweiss, J;
- Schambach, J;
- Schmidke, WB;
- Schmitz, N;
- Schweid, BR;
- Seck, F;
- Seger, J;
- Sergeeva, M;
- Seto, R;
- Seyboth, P;
- Shah, N;
- Shahaliev, E;
- Shanmuganathan, PV;
- Shao, M;
- Shen, F;
- Shen, WQ;
- Shi, SS;
- Shou, QY;
- Sichtermann, EP;
- Siejka, S;
- Sikora, R;
- Simko, M;
- JSingh;
- Singha, S;
- Smirnov, D;
- Smirnov, N;
- Solyst, W;
- Sorensen, P;
- Spinka, HM;
- Srivastava, B;
- Stanislaus, TDS;
- Stewart, DJ;
- Strikhanov, M;
- Stringfellow, B;
- Suaide, AAP;
- Sugiura, T;
- Sumbera, M;
- Summa, B;
- Sun, XM;
- Sun, Y;
- Sun, Y;
- Surrow, B;
- Svirida, DN;
- Szymanski, P;
- Tang, AH;
- Tang, Z;
- Taranenko, A;
- Tarnowsky, T;
- Thomas, JH;
- Timmins, AR;
- Todoroki, T;
- Tokarev, M;
- Tomkiel, CA;
- Trentalange, S;
- Tribble, RE;
- Tribedy, P;
- Tripathy, SK;
- Tsai, OD;
- Tu, B;
- Ullrich, T;
- Underwood, DG;
- Upsal, I;
- Van Buren, G;
- Vanek, J;
- Vasiliev, AN;
- Vassiliev, I;
- Videbæk, F;
- Vokal, S;
- Voloshin, SA;
- Wang, F;
- Wang, G;
- Wang, P;
- Wang, Y;
- Wang, Y;
- Webb, JC;
- Wen, L;
- Westfall, GD;
- Wieman, H;
- Wissink, SW;
- Witt, R;
- Wu, Y;
- Xiao, ZG;
- Xie, G;
- Xie, W;
- Xu, H;
- Xu, N;
- Xu, QH;
- Xu, YF;
- Xu, Z;
- Yang, C;
- Yang, Q;
- Yang, S;
- Yang, Y;
- Ye, Z;
- Ye, Z;
- Yi, L;
- Yip, K;
- Yoo, I-K;
- Zbroszczyk, H;
- Zha, W;
- Zhang, D;
- Zhang, L;
- Zhang, S;
- Zhang, S;
- Zhang, XP;
- Zhang, Y;
- Zhang, Z;
- Zhao, J;
- Zhong, C;
- Zhou, C;
- Zhu, X;
- Zhu, Z;
- Zurek, MK;
- Zyzak, M
Published Web Location
https://doi.org/10.1103/physrevlett.123.132302Abstract
We report on the first measurements of J/ψ production at very low transverse momentum (p_{T}<0.2 GeV/c) in hadronic Au+Au collisions at sqrt[s_{NN}]=200 GeV and U+U collisions at sqrt[s_{NN}]=193 GeV. Remarkably, the inferred nuclear modification factor of J/ψ at midrapidity in Au+Au (U+U) collisions reaches about 24 (52) for p_{T}<0.05 GeV/c in the 60%-80% collision centrality class. This noteworthy enhancement cannot be explained by hadronic production accompanied by cold and hot medium effects. In addition, the dN/dt distribution of J/ψ for the very low p_{T} range is presented for the first time. The distribution is consistent with that expected from the Au nucleus and shows a hint of interference. Comparison of the measurements to theoretical calculations of coherent production shows that the excess yield can be described reasonably well and reveals a partial disruption of coherent production in semicentral collisions, perhaps due to the violent hadronic interactions. Incorporating theoretical calculations, the results strongly suggest that the dramatic enhancement of J/ψ yield observed at extremely low p_{T} originates from coherent photon-nucleus interactions. In particular, coherently produced J/ψ's in violent hadronic collisions may provide a novel probe of the quark-gluon plasma.
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