论文标题

估计能量夸克的颜色寿命

Estimating the Color Lifetime of Energetic Quarks

论文作者

Brooks, William K., López, Jorge A.

论文摘要

使用具有逼真的核密度分布的简单几何框架,我们拟合了HERMES数据,以确定使用核培养基作为空间分析仪的强发化的基本特性。我们的方法使用横向动量扩大可观察到的横向动量和强度比的拟合度。同时拟合两个不同的可观察物极大地限制了结果。使用目标核的已知尺寸,我们提取颜色寿命,找到z $ \ mathrm {_h} $ - 依赖性范围为2至8 fm/c的值范围。我们还提取了$ \ hat {q} $传输系数的估计值,该系数表征了夸克和冷核介质之间相互作用的强度,发现平均值为0.035 $ \ pm $ 0.011 GEV $ \ MATHRM {^2} $/fm。使用三参数模型,我们获得了可满足数据的满意度拟合,其拟合参数$χ^2 $/DOF为1.1或以下。在该模型的结果的次要拟合中,我们独立地找到了1.00 $ \ pm $ 0.05 GEV/FM的Lund String String String张力的值。我们评估了使用该模型的四参数变体提取夸克能量损失和有效的HADRONIC横截面的敏感性,在这两种情况下都发现了很大的不确定性。我们的结果表明,在核培养基中形成的载体的强化相互作用是爱马仕数据中介子衰减的主要动力学原因,夸克能量损失的作用较小。

Using a simple geometric framework with a realistic nuclear density distribution, we fit published HERMES data to determine fundamental properties of hadronization using the nuclear medium as a spatial analyzer. Our approach uses a fit to the transverse momentum broadening observable and the hadronic multiplicity ratio; the simultaneous fit to two different observables strongly constrains the outcome. Using the known sizes of the target nuclei, we extract the color lifetime, finding a z$\mathrm{_h}$-dependent range of values from 2 to 8 fm/c for these data. We also extract estimates for the $\hat{q}$ transport coefficient characterizing the strength of the interaction between the quark and the cold nuclear medium, finding an average value of 0.035$\pm$0.011 GeV$\mathrm{^2}$/fm. With a three-parameter model we obtain satisfactory fits to the data with a goodness-of-fit parameter $χ^2$/dof of 1.1 or less. In a secondary fit of the results from that model we independently find a value for the Lund String Model string tension of 1.00$\pm$0.05 GeV/fm. We evaluated the sensitivity for extracting quark energy loss and effective in-medium hadronic cross sections using four-parameter variants of the model, finding large uncertainties in both cases. Our results suggest that hadronic interaction of forming hadrons in the nuclear medium is the primary dynamical cause of meson attenuation in the HERMES data, with quark energy loss playing a more minor role.

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