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首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Dynamical energy loss formalism: from describing suppression patterns to implications for future experiments
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Dynamical energy loss formalism: from describing suppression patterns to implications for future experiments

机译:动态能量损失形式主义:从描述抑制模式对未来实验的影响

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We overview our recently developed DREENA-C and DREENA-B frameworks, where DREENA (Dynamical Radiative and Elastic ENergy loss Approach) is a computational implementation of the dynamical energy loss formalism; C stands for constant temperature and B for the medium evolution modeled by Bjorken expansion. At constant temperature our predictions overestimate v(2), in contrast to other models, but consistent with simple analytical estimates. With Bjorken expansion, we obtain good agreement with both R-AA and v(2) measurements. We find that introducing medium evolution has a larger effect on v(2) predictions, but for precision predictions it has to be taken into account in R-AA predictions as well. We also propose a new observable, which we call path length sensitive suppression ratio, for which we argue that the path length dependence can be assessed in a straightforward manner. We also argue that Pb + Pb vs. Xe + Xe collisions make a good system to assess the path length dependence. As an outlook, we expect that introduction of more complex medium evolution (beyond Bjorken expansion) in the dynamical energy loss formalism can provide a basis for a state of the art QGP tomography tool - e.g. to jointly constrain the medium properties from the point of both high-p(perpendicular to) and low-p(perpendicular to) data.
机译:我们概述了我们最近开发的Dreena-C和Dreena-B框架,其中Dreena(动态辐射和弹性能量损失方法)是动态能量损失形式主义的计算实现; C代表Bjorken扩展模型的常量温度和B.在恒定温度下我们的预测高估了V(2),相对于其他车型,但简单的分析预测是一致的。通过Bjorken扩展,我们与R-AA和V(2)测量均获良好的一致性。我们发现引入中型演进对V(2)预测具有更大的影响,但对于精确预测,必须在R-AA预测中被考虑。我们还提出了一种新的可观察者,我们呼叫路径长度敏感抑制比,我们认为可以以简单的方式评估路径长度依赖性。我们还认为,铅+铅对氙+氙碰撞使一个很好的系统来评估的路径长度依赖。作为一个看法,我们预计在动态能量损失形式主义中引入更复杂的中型进化(超越Bjorken扩展)可以为QGP断层扫描工具的状态提供基础 - 例如,共同约束介质性质,从高p(垂直于)和低p(垂直于)数据的点。

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