论文标题
多阶段方法中的包容性喷气和强子抑制
Inclusive jet and hadron suppression in a multistage approach
论文作者
论文摘要
我们使用Jetscape框架中的多阶段事件发生器在高能重型离子碰撞中创建的夸克 - 格鲁隆等离子体中的喷气相互作用进行了新的研究。我们专注于中等诱导的修改,对包容性喷射速率和高横向动量(高$ p _ {\ mathrm {t}} $)HADRON。散射引起的射流能量损失分为两个阶段:基于物质模型的高虚拟阶段,其中高度虚拟参与者的散射修饰了真空辐射模式,以及基于LBT模型的下射流虚拟度的第二阶段,其中领先的部分通过散射和辐射来获得领先的部分,而领先的部分则获得了虚拟性。还包括降低物质阶段中介导率的相干效应。 Trento模型用于初始条件,(2+1)维斯努模型用于粘性流体动力进化。与培养基相互作用是通过2-2散射建模的,并用Debye筛选电势进行了射击,其中后退党被跟踪,强调并包含在射流簇中。还跟踪介质中留下的孔并减去以节省横向动量。将核修饰因子($ r _ {\ mathrm {aa}} $)用于包含喷气机和高$ P _ {\ Mathrm {t}} $ HADRON与BNL相对性重型离子(RHIC)和Cern groun Hadron Collider(lhc)的实验测量进行比较。在此框架内,我们发现,使用一个额外的参数,可以编码JET修改阶段之间的过渡 - 以及典型的参数,例如介质中的耦合,开始和停止标准等 - 我们可以在中央和半次碰撞的所有能量中描述这些数据,而无需重新运输飞机运输系数$ \ hat jet tementral corkitions usicectria。
We present a new study of jet interactions in the quark-gluon plasma created in high-energy heavy-ion collisions, using a multistage event generator within the JETSCAPE framework. We focus on medium-induced modifications in the rate of inclusive jets and high transverse momentum (high-$p_{\mathrm{T}}$) hadrons. Scattering-induced jet energy loss is calculated in two stages: A high virtuality stage based on the MATTER model, in which scattering of highly virtual partons modifies the vacuum radiation pattern, and a second stage at lower jet virtuality based on the LBT model, in which leading partons gain and lose virtuality by scattering and radiation. Coherence effects that reduce the medium-induced emission rate in the MATTER phase are also included. The TRENTo model is used for initial conditions, and the (2+1)dimensional VISHNU model is used for viscous hydrodynamic evolution. Jet interactions with the medium are modeled via 2-to-2 scattering with Debye screened potentials, in which the recoiling partons are tracked, hadronized, and included in the jet clustering. Holes left in the medium are also tracked and subtracted to conserve transverse momentum. Calculations of the nuclear modification factor ($R_{\mathrm{AA}}$) for inclusive jets and high-$p_{\mathrm{T}}$ hadrons are compared to experimental measurements at the BNL Relativistic Heavy Ion Collider (RHIC) and the CERN Large Hadron Collider (LHC). Within this framework, we find that with one extra parameter which codifies the transition between stages of jet modification -- along with the typical parameters such as the coupling in the medium, the start and stop criteria etc. -- we can describe these data at all energies for central and semicentral collisions without a rescaling of the jet transport coefficient $\hat{q}$.