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TEMPERATURES AND DENSITIES IN NUCLEAR MATTER OBTAINED IN Au-Au COLLISIONS AT RHIC-BNL ENERGIES

机译:RHIC-BNL能量在Au-Au碰撞中获得的核物质的温度和密度

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摘要

Ultrarelativistic heavy ion collisions are useful "tools" to investigate highly excited dense nuclear matter. At sufficiently high temperature, nuclear matter is expected to undergo a phase transition to quark-gluon plasma. Some predictions and experimental results on the rapidity and pseudorapidity distributions, as well as on hadron spectra, are included in this paper. For predictions the UrQMD and HIJING codes have been used. The rapidity density, respectively, pseudorapidity density are used to estimate energy density. From transverse mass spectra and transverse momentum spectra are extracted pions, kaons, protons and antiprotons temperatures. The mass dependence of the slope parameters provides evidence of collective transverse flow. Comparisons with the two codes predictions are included. Taking into account the fact that some information on the collision dynamics and the thermalisation degree is obtained from the spectral shapes of the interesting physical quantities and their dependencies on rapidity in this paper the dependencies of the average transverse momentum on the rapidity densities and on the pseudorapidity densities are studied. The values of the energy and baryonic densities - over 10 normal values - as well as the agreement between the experimental values on participants and phenomenological model estimations, represent a support for the estimated thermodynamic parameters of the nuclear matter in Au-Au collisions at RHIC-BNL energies, as well as for the possibility to evidence phase transitions to the quark plasma and quark-gluon plasma in these collisions.
机译:超相对论重离子碰撞是研究高激发致密核物质的有用“工具”。在足够高的温度下,预计核物质将发生相变,形成夸克-胶子等离子体。本文还包括一些关于速度和伪快速分布以及强子谱的预测和实验结果。为了进行预测,使用了UrQMD和HIJING码。分别使用快速密度,伪快速密度来估计能量密度。从横向质谱和横向动量谱中提取离子,钾,质子和反质子的温度。斜率参数的质量依赖性为集体横向流动提供了证据。包括与两个代码预测的比较。考虑到这样的事实,即从有趣的物理量的光谱形状及其对速度的依赖性中获得了有关碰撞动力学和热化程度的一些信息,在本文中,平均横向动量对速度密度和拟快速性的依赖性研究密度。能量和重子密度的值-超过10个正常值-以及参与者的实验值与现象学模型估计之间的一致性,表示对RHIC-Au-Au碰撞中核物质的估计热力学参数的支持。 BNL能量,以及证明在这些碰撞中相变到夸克等离子体和夸克胶子等离子体的可能性。

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