论文标题

在超旧系统的大型和小碰撞系统中电磁场和定向流动

Electromagnetic fields and directed flow in large and small colliding systems at ultrarelativistic energies

论文作者

Oliva, Lucia

论文摘要

在超层流能量上核碰撞中产生的热和密集的QCD物质的特征是非常强烈的电磁场,它们在早期平衡阶段的最大强度,并与碰撞系统的大角度动量在血浆中引起的强涡度相互作用。这些现象的可观察到的可观察到的痕迹是在对称和不对称重型离子碰撞以及质子诱导的反应中产生的浅黑龙和重的介体的定向流动。特别是,在具有相同质量但相反的电荷的粒子之间将定向流的分裂作为速度和横向动量的函数,可访问所有碰撞阶段和不同碰撞系统中培养基的电磁响应。在碰撞的前平衡阶段设想了电磁场的最高影响,因此早期产生的重夸克将留下明显的烙印。这篇综述的目的是讨论当前嵌入大小系统中电磁场的产生和放松时间的发展,及其对电荷的指向光和重粒子的影响,突出了实验结果和不同的理论方法。由于可以对高能碰撞进行逼真的模拟,这些模拟还结合了产生的电磁场和涡度,因此对定向流的研究可以为早期非平衡阶段以及随之而来的QGP形成和运输特性提供独特的见解。

The hot and dense QCD matter produced in nuclear collisions at ultrarelativistic energy is characterized by very intense electromagnetic fields which attain their maximal strength in the early pre-equilibrium stage and interplay with the strong vorticity induced in the plasma by the large angular momentum of the colliding system. A promising observable keeping trace of these phenomena is the directed flow of light hadrons and heavy mesons produced in symmetric and asymmetric heavy-ion collisions as well as in proton-induced reactions. In particular, the splitting of the directed flow between particles with the same mass but opposite electric charge as a function of rapidity and transverse momentum gives access to the electromagnetic response of medium in all collision stages and in the different colliding systems. The highest influence of electromagnetic fields is envisaged in the pre-equilibrium stage of the collision and therefore a significant imprint is left on the early-produced heavy quarks. The aim of this review is to discuss the current developments towards the understanding of the generation and relaxation time of the electromagnetic fields embedded in both large and small systems and their impact on the charge-odd directed flow of light and heavy particles, highlighting the experimental results and the different theoretical approaches. Since it is possible to perform realistic simulations of high-energy collisions that incorporate also the generated electromagnetic fields and vorticity, the study of the directed flow can provide unique insight into the early nonequilibrium phase and the ensuing QGP formation and transport properties.

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