QCD物质输运系数的多系统贝叶斯约束

D. Everett, W. Ke, J. Paquet, G. Vujanovic, S. Bass, L. Du, C. Gale, M. Heffernan, U. Heinz, D. Liyanage, M. Luzum, A. Majumder, M. McNelis, C. Shen, Y. Xu, A. Angerami, S. Cao, Y. Chen, J. Coleman, L. Cunqueiro, T. Dai, R. Ehlers, H. Elfner, W. Fan, R. Fries, F. Garza, Y. He, B. Jacak, P. Jacobs, S. Jeon, B. Kim, M. Kordell, A. Kumar, S. Mak, J. Mulligan, C. Nattrass, D. Oliinychenko, C. Park, J. Putschke, G. Roland, B. Schenke, L. Schwiebert, A. Silva, C. Sirimanna, R. Soltz, Y. Tachibana, X.-N. Wang, R. Wolpert
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引用次数: 90

摘要

我们用重离子碰撞的多级模型研究了强耦合夸克-胶子等离子体的性质,该模型结合了T$_\ mathm {R}$ENTo初始条件分析、自由流、粘性相对论流体力学和相对论强子输运。与贝叶斯推理进行了模型到数据的比较,重新审视了以前研究中做出的假设。考虑到参数先验对结果解释的重要性,本文研究了参数先验的作用。我们强调在与观察结果进行比较之前,使用闭合测试对分析工作流进行广泛的验证。我们的研究结合了大型强子对撞机和相对论重离子对撞机的测量结果,对两个对撞机的大量强子观测结果进行了很好的同时描述。所选实验数据对夸克-胶子等离子体在150 ~ 250 MeV温度下的剪切粘度和体粘度提供了合理的约束,但在250 MeV温度下约束能力下降。此外,发现这些粘度约束在很大程度上取决于在从流体力学到强子输运的过渡中如何处理粘性修正。包括自由流时间在内的其他几个模型参数显示出类似的模型灵敏度,而与T$_\ mathm {R}$ENTo相关的初始条件参数对颗粒化处方的变化具有相当强的鲁棒性。我们还报告了单个观测值对各种模型参数的敏感性。最后,利用贝叶斯模型选择方法定量比较了不同模型假设下粒子化模型与LHC能量之间参数变化的一致性。
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Multisystem Bayesian constraints on the transport coefficients of QCD matter
We study the properties of the strongly-coupled quark-gluon plasma with a multistage model of heavy ion collisions that combines the T$_\mathrm{R}$ENTo initial condition ansatz, free-streaming, viscous relativistic hydrodynamics, and a relativistic hadronic transport. A model-to-data comparison with Bayesian inference is performed, revisiting assumptions made in previous studies. The role of parameter priors is studied in light of their importance towards the interpretation of results. We emphasize the use of closure tests to perform extensive validation of the analysis workflow before comparison with observations. Our study combines measurements from the Large Hadron Collider and the Relativistic Heavy Ion Collider, achieving a good simultaneous description of a wide range of hadronic observables from both colliders. The selected experimental data provide reasonable constraints on the shear and the bulk viscosities of the quark-gluon plasma at $T\sim$ 150-250 MeV, but their constraining power degrades at higher temperatures $T \gtrsim 250$ MeV. Furthermore, these viscosity constraints are found to depend significantly on how viscous corrections are handled in the transition from hydrodynamics to the hadronic transport. Several other model parameters, including the free-streaming time, show similar model sensitivity while the initial condition parameters associated with the T$_\mathrm{R}$ENTo ansatz are quite robust against variations of the particlization prescription. We also report on the sensitivity of individual observables to the various model parameters. Finally, Bayesian model selection is used to quantitatively compare the agreement with measurements for different sets of model assumptions, including different particlization models and different choices for which parameters are allowed to vary between RHIC and LHC energies.
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