论文标题
来自单个强子,Dihadron和$γ$ -HADRON SPECTRA的全球限制在高能重型离子碰撞中
Global constraint on the jet transport coefficient from single hadron, dihadron and $γ$-hadron spectra in high-energy heavy-ion collisions
论文作者
论文摘要
在相对论重离子碰撞中,大型横向动量单强生,Dihadron和$γ$ -HADRON光谱的修改是Quark-Gluon等离子体(QGP)中Parton-Medium Itsportay的直接后果。可以通过喷气运输系数$ \ hat {q} $来量化相互作用强度和基础动力。我们使用近距离领先的PQCD Parton模型对$ \ hat {q} $进行了第一个全球限制,该模型具有更高的parton能量损失,并结合了单个强子,Dihadron和$γ$ -HADRON抑制RHIC和LHC能源的世界实验数据。使用信息字段(如果)先验的全球贝叶斯分析对$ \ hat q(t)$提供了最严格的约束。我们特别证明了IF贝叶斯分析对$ \ hat {q} $的较强温度依赖性的渐进式约束功率,并使用来自不同中心和碰撞能量的数据。我们还讨论了使用具有不同几何偏差的包容性和相关性可观察物的优点。作为验证,已显示获得的$ \ hat {q}(t)$在高横向动量处描述了单个强化各向异性的数据。还提供了对氧气氧碰撞中未来喷气猝灭测量结果的预测。
Modifications of large transverse momentum single hadron, dihadron, and $γ$-hadron spectra in relativistic heavy-ion collisions are direct consequences of parton-medium interactions in the quark-gluon plasma (QGP). The interaction strength and underlying dynamics can be quantified by the jet transport coefficient $\hat{q}$. We carry out the first global constraint on $\hat{q}$ using a next-to-leading order pQCD parton model with higher-twist parton energy loss and combining world experimental data on single hadron, dihadron, and $γ$-hadron suppression at both RHIC and LHC energies with a wide range of centralities. The global Bayesian analysis using the information field (IF) priors provides the most stringent constraint on $\hat q(T)$. We demonstrate in particular the progressive constraining power of the IF Bayesian analysis on the strong temperature dependence of $\hat{q}$ using data from different centralities and colliding energies. We also discuss the advantage of using both inclusive and correlation observables with different geometric biases. As a verification, the obtained $\hat{q}(T)$ is shown to describe data on single hadron anisotropy at high transverse momentum well. Predictions for future jet quenching measurements in oxygen-oxygen collisions are also provided.