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Rapidity distributions of hadrons in the HydHSD hybrid model

机译:HYDHSD杂交模型中HADRONS的快速分布

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摘要

A multistage hybrid model intended for describing heavy-ion interactions in the energy region of the NICA collider under construction in Dubna is proposed. The model combines the initial, fast, interaction stage described by the model of hadron string dynamics (HSD) and the subsequent evolution that the expanding system formed at the first stage experiences at the second stage and which one treats on the basis of ideal hydrodynamics; after the completion of the second stage, the particles involved may still undergo rescattering (third interaction stage). The model admits three freeze-out scenarios: isochronous, isothermal, and isoenergetic. Generally, the HydHSD hybrid model developed in the present study provides fairly good agreement with available experimental data on proton rapidity spectra. It is shown that, within this hybrid model, the two-humped structure of proton rapidity distributions can be obtained either by increasing the freeze-out temperature and energy density or by more lately going over to the hydrodynamic stage. Although the proposed hybrid model reproduces rapidity spectra of protons, it is unable to describe rapidity distributions of pions, systematically underestimating their yield. It is necessary to refine the model by including viscosity effects at the hydrodynamic stage of evolution of the system and by considering in more detail the third interaction stage.
机译:提出了一种用于描述在杜拜疆建造的Nica撞机能量区域中的重离子相互作用的多级混合模型。该模型结合了强子串动态(HSD)模型描述的初始,快速,交互阶段,以及随后的演化,即在第二阶段的第一阶段经验中形成的扩展系统以及基于理想的流体动力学的展开;在第二阶段完成之后,所涉及的颗粒可能仍然经过改复(第三相互作用阶段)。该模型承认三种冻结情景:等时,等温和异种。通常,本研究中开发的HyDHSD混合模型提供了与质子快速光谱的可用实验数据相当愉快的协议。结果表明,在该混合模型中,通过增加冻结温度和能量密度或更近地迁移到流体动力学阶段,可以获得质子快速分布的两峰结构。尽管所提出的杂种模型再现质子的快速光谱,但它无法描述接头的快速分布,系统地低估它们的产率。必须通过在系统的进化的流体动力学阶段包括在系统的流体动力学阶段,并通过更详细地考虑第三相互作用阶段,通过包括粘度效应来细化模型。

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