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Coupled Boltzmann transport equations of heavy quarks and quarkonia in quark-gluon plasma

机译:Quark-Gluon等离子体中重型夸克和Quarkonia的耦合Boltzmann运输方程

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A bstract We develop a framework of coupled transport equations for open heavy flavor and quarkonium states, in order to describe their transport inside the quark-gluon plasma. Our framework is capable of studying simultaneously both open and hidden heavy flavor observables in heavy-ion collision experiments and can account for both, uncorrelated and correlated recombination. Our recombination implementation depends on real-time open heavy quark and antiquark distributions. We carry out consistency tests to show how the interplay among open heavy flavor transport, quarkonium dissociation and recombination drives the system to equilibrium. We then apply our framework to study bottomonium production in heavy-ion collisions. We include ?(1 S ), ?(2 S ), ?(3 S ), χ _( b )(1 P ) and χ _( b )(2 P ) in the framework and take feed-down contributions during the hadronic gas stage into account. Cold nuclear matter effects are included by using nuclear parton distribution functions for the initial primordial heavy flavor production. A calibrated 2 + 1 dimensional viscous hydrodynamics is used to describe the bulk QCD medium. We calculate both the nuclear modification factor R _(AA)of all bottomonia states and the azimuthal angular anisotropy coefficient v _(2)of the ?(1 S ) state and find that our results agree reasonably with experimental measurements. Our calculations indicate that correlated cross-talk recombination is an important production mechanism of bottomonium in current heavy-ion experiments. The importance of correlated recombination can be tested experimentally by measuring the ratio of R _(AA)( χ _( b )(1 P )) and R _(AA)(?(2 S )).
机译:一个bstract我们开发加上输运方程开放重味和夸克偶素的状态的框架,以描述他们的夸克 - 胶子等离子体内运输。我们的架构能够在重离子碰撞实验研究同时打开和隐藏重味观测量的,可以考虑两种不相关的和相关的重组。我们的重组实现依赖于实时开通重夸克和反夸克分布。我们进行一致性测试,以展示如何开放味道很重运输,夸克偶素的分解和重组驱动系统平衡之间的相互作用。然后,我们应用我们的研究bottomonium生产框架中重离子碰撞。我们包括?(1个S),?(2 S),?(3 S),χ_(B)(1个P)和χ_(B)(2 P)中的框架和取料向下的贡献在强子气体阶段考虑进去。冷战核物质的作用是通过利用核部分子分布函数的初始原始味重的生产包括在内。经校准的2 + 1个维的粘性流体力学用于描述散装QCD平台。我们计算这两个核修正因子R _所有bottomonia状态(AA)和?(1个S)状态的方位角各向异性系数v _(2),并发现我们的结果与实验测量相当一致。我们的计算表明,相关的串扰重组是当前重离子实验bottomonium重要的生产机制。相关重组的重要性可通过实验,通过测量的R _(AA)(χ_(B)(1个P))和R _(AA)(?)(2 S)的比例进行试验。

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