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Heavy flavor at the large hadron collider in a strong coupling approach

机译:强力耦合方法使大型强子对撞机具有浓郁的风味

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摘要

Employing nonperturbative transport coefficients for heavy-flavor (HF) diffusion through quark–gluon plasma (QGP), hadronization and hadronic matter, we compute D - and B -meson observables in Pb+Pb ( ) collisions at the LHC. Elastic heavy-quark scattering in the QGP is evaluated within a thermodynamic T -matrix approach, generating resonances close to the critical temperature which are utilized for recombination into D and B mesons, followed by hadronic diffusion using effective hadronic scattering amplitudes. The transport coefficients are implemented via Fokker–Planck Langevin dynamics within hydrodynamic simulations of the bulk medium in nuclear collisions. The hydro expansion is quantitatively constrained by transverse-momentum spectra and elliptic flow of light hadrons. Our approach thus incorporates the paradigm of a strongly coupled medium in both bulk and HF dynamics throughout the thermal evolution of the system. At low and intermediate , HF observables at LHC are reasonably well accounted for, while discrepancies at high are indicative for radiative mechanisms not included in our approach.
机译:利用夸克-胶子等离子体(QGP),强子化和强子物质的重味(HF)扩散的非摄动输运系数,我们计算了LHC在Pb + Pb()碰撞中的D和B介子可观观测值。 QGP中的弹性重夸克散射是通​​过热力学T矩阵方法评估的,产生接近临界温度的共振,该共振用于重组为D和B介子,然后使用有效的强子散射幅度进行强子扩散。传输系数是通过Fokker-Planck Langevin动力学在核碰撞中对大体积介质的流体动力学模拟内实现的。水的膨胀在定量上受到横向动量谱和椭圆形强子流的限制。因此,我们的方法在整个系统的热演化过程中都将强耦合介质的范式纳入了体动力学和HF动力学。在低和中,在LHC的HF观测值得到了很好的解释,而高的差异则表明我们的方法未包括辐射机制。

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