dorsal/arxiv
View Schema$\Delta$-scaling and heat capacity in relativistic ion collisions
| Authors | Y. G. Ma, G. L. Ma, X. Z. Cai, J. G. Chen, J. H. Chen, D. Q. Fang, W. Guo, Z. J. He, H. Z. Huang, J. L. Long, C. W. Ma, B. H. Sa, W. Q. Shen, Q. M. Su, K. Wang, Y. B. Wei, T. Z. Yan, C. Zhong, J. X. Zuo |
|---|---|
| Categories | |
| ArXiv ID | nucl-th/0411112 |
| URL | https://arxiv.org/abs/nucl-th/0411112 |
| DOI | 10.1088/0954-3899/31/6/082 |
| Journal | J.Phys.G31:S1179-S1182,2005 |
Abstract
The $\Delta$-scaling method has been applied to the total multiplicity distribution of the relativistic ion collisions of p+p, C+C and Pb+Pb which were simulated by a Monte Carlo package, LUCIAE 3.0. It is found that the $\Delta$-scaling parameter decreases with the increasing of the system size. Moreover, the heat capacities of different mesons and baryons have been extracted from the event-by-event temperature fluctuation in the region of low transverse mass and they show the dropping trend with the increasing of impact parameter.
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"abstract": "The $\\Delta$-scaling method has been applied to the total multiplicity\ndistribution of the relativistic ion collisions of p+p, C+C and Pb+Pb which\nwere simulated by a Monte Carlo package, LUCIAE 3.0. It is found that the\n$\\Delta$-scaling parameter decreases with the increasing of the system size.\nMoreover, the heat capacities of different mesons and baryons have been\nextracted from the event-by-event temperature fluctuation in the region of low\ntransverse mass and they show the dropping trend with the increasing of impact\nparameter.",
"arxiv_id": "nucl-th/0411112",
"authors": [
"Y. G. Ma",
"G. L. Ma",
"X. Z. Cai",
"J. G. Chen",
"J. H. Chen",
"D. Q. Fang",
"W. Guo",
"Z. J. He",
"H. Z. Huang",
"J. L. Long",
"C. W. Ma",
"B. H. Sa",
"W. Q. Shen",
"Q. M. Su",
"K. Wang",
"Y. B. Wei",
"T. Z. Yan",
"C. Zhong",
"J. X. Zuo"
],
"categories": [
"nucl-th",
"nucl-ex"
],
"doi": "10.1088/0954-3899/31/6/082",
"journal_ref": "J.Phys.G31:S1179-S1182,2005",
"title": "$\\Delta$-scaling and heat capacity in relativistic ion collisions",
"url": "https://arxiv.org/abs/nucl-th/0411112"
},
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