NUCLEAR PHYSICS |
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Observation of Influence of Nucleons' Motion on Kaons Collective Flow in Dense Medium |
XING Yong-Zhong1,2, ZHENG Yu-Ming2,3, WANG Yan-Yan1, ZHANG Lin1, QU Shi-Xian1 |
1College of Physics and Information Technology, Shaanxi Normal University, Xi'an 7100622Department of Physics, Tianshui Normal University, Tianshui 7410003China Institute of Atomic Energy, PO Box 275(18), Beijing 102413 |
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Cite this article: |
XING Yong-Zhong, ZHENG Yu-Ming, WANG Yan-Yan et al 2010 Chin. Phys. Lett. 27 012501 |
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Abstract In order to extract the information of the momentum-dependent interaction of kaons under the extreme condition, the properties of the positively charged kaons produced in a heavy ion collision are studied via a simple model which has an invariable nucleon's velocity. Our special attention is focused on the observation of the dependence of the kaon's properties on the motion of nucleons in a hot and dense nuclear environment. Starting from two kinds of kaon quasiparticle models defined in transport theories for simulating heavy ion collisions, we calculate the effective mass and potential of the K+'s produced in the collisions and find that these properties not only depend closely on the velocity of nucleons but the dependence varies with kaon's quasiparticle model. It is clearly shown that the motion of nucleons reduces the momentum of K+'s at a given rapidity and thus weakens the rapidity distribution of K+'s directed flow in realistic nuclear collisions.
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Keywords:
25.75.Ld
24.10.Jv
25.75.Dw
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Received: 25 September 2009
Published: 30 December 2009
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[1] Buras A J 1996 arXiv:hep-ph/9609324 v1 Buras A J 2003 arXiv:hep-ph/0307203 v1 [2] Brown G E and Rho M 1996 Phys. Rep. 269 333 [3] Klimt S, Lutz M and Weise W 1990 Phys. Lett. B 249 386 [4] Fuchs C, Faessler A, Wang Z S and Gross B T 1999 Prog. Part. Nucl. Phys. 42 197 [5] Brown G E and Rho M 2001 arXiv:hep-ph/0103102 v4 [6] Harris J W et al 1981 Phys. Rev. Lett. 47 229Schnetzler S et al 1982 Phys. Rev. Lett. 49 989 [7] Miskowiec D et al (KaoS Collaboration) 1994 Phys.Rev. Lett. 72 3650 [8] Ritman J et al (FOPI Collaboration) 1995 Z. Phys. A 352 355 [9] Li G Q and Ko C M 1995 Nucl. Phys. A 582 731 [10] Fuchs C, Wang Z and Sehn L et al 1997arXiv:nucl-th/9701065 v2 26 [11] Hartnack C 2005 arXiv:nucl-th/0507002 v1 [12] Lutz M, Steiner A and Weise W 1994 Nucl. Phys. A 574 755 Li G Q, Lee C H and Brown G E 1997 arXiv:nucl-th/9706057 v1 Tsushima K, Saito K, Thomas A W et al 1998 Phys. Lett.B 429 239 Xing Y Z, Wang Y Y and Zheng Y M et al 2009 ActaPhys. Sin. (submitted) [13] Fuchs C, Kosov D S, Faessler A, Wang Z S and Waindzoch T1998 Phys. Lett. B 434 245 [14] Zheng Y M, Fuchs C, Faessler A et al 2004 Phys.Rev. C 69 034907 [15] Randrup J and Ko C M 1980 Nucl. Phys. A 343519 Randrup J and Ko C M 1983 Nucl. Phys. A 411537 Cugnon J and Lombard R M 1984 Nucl. Phys. A 422635 Fang X S, Ko C M, Li G Q and Zheng Y M 1994 Nucl.Phys. A 575 766 [16] Cassing W, Metag V, Mosel U and Niita K 1990 Phys.Rep. 188 363 [17] Kaplan D B and Nelson A E 1986 Phys. Lett. B 175 57 Nelson A E and Kaplan D B 1987 Phys. Lett. B 192 193 [18] Li G Q and Ko C M 1995 Nucl. Phys. A 594 460 [19] Fuchs C 2006 Part. Prog. Nucl. Phys. 56 1 Fuchs C 2005 Ariv: nucl-th/0507017 v2 [20] Ko C M and Li G Q 1996 J. Phys. G: Nucl. Part.Phys. 22 1673 [21] Xing Y Z, Zheng Y Z, Srisawad P et al 2009 Chin.Phys. Lett. 26 022501 and references therein [22] Herrmann H et al (FOPI Collaboration) 1999 Prog.Part. Nucl. Phys. 42 187 Crochet P et al (FOPI Collaboration) 2001 J. Phys. G 27 267 [23] Li G Q and Brown G E 1998 Nucl. Phys. A 636487 |
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