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Small system studies: A theory overview

机译:小型系统研究:理论概述

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There is now a substantial body of evidence that a deconfined quark-gluon plasma is created in ultrarelativistic collisions of heavy nuclei. Some key observables which are used to gauge the production of the quark-gluon plasma are the hadronic spectra and multiplicities across many species, azimuthal anisotropies in the production of various hadrons, jet quenching, photon/dilepton production, and heavy quarkonium suppression. A key question in the study of the quark-gluon plasma is what happens to these observables as one changes the system size. In particular, it is very interesting to study collisions of "small systems" such as pp, dA, pA, and e(+)e(-) since naively one does not expect to produce a QGP in these cases. One of the surprises from such studies was the existence of sizable azimuthal anisotropies in the hadron spectra in the highest multiplicity classes, which led to speculations that one can generate a QGP in such relatively rare events. This interpretation, however, is complicated by the fact that there can be multiple sources of azimuthal anisotropy. I will discuss our current understanding of the different sources of azimuthal anisotropies and the multiplicity windows in which each mechanism is expected to dominate. I will also provide a critical discussion of the reliability of hydrodynamic models applied to small systems. Finally, I will briefly discuss jet quenching and heavy quarkonium suppression in small systems and discuss whether or not these observables show any indication of the production of a small QGP droplet.
机译:现在存在大量证据表明,在重核的超灌注体碰撞中产生了欺骗性夸克 - 胶质等离子体。用于衡量夸克 - 胶质等离子体的生产的一些关键可观察到是跨越许多物种的辐射光谱和多重性,方位角各向异性在各种强子的生产中,喷射淬火,光子/蛋白质生产以及重古古柱抑制。在Quark-gluon等离子体的研究中的一个关键问题是这些可观察到的可能发生的事情,因为一个改变了系统尺寸。特别是,研究诸如PP,DA,PA和E( - )的“小系统”的碰撞非常有趣的是,因为在这些情况下不希望在这些情况下产生QGP。这种研究的一个惊喜是在最高多个类别中的强子谱中的具有相同方位角各向异性的存在,这导致了一种在这种相对罕见的事件中产生QGP的猜测。然而,这种解释使得可以有多种方位角各向异性来源的事实是复杂的。我将讨论我们目前对各方位点各向异性的不同来源以及每种机制预期占主导地位的多种窗口的理解。我还将提供对应用于小型系统的流体动力学模型的可靠性的关键讨论。最后,我将简要讨论小型系统中的喷射淬火和重质Quarkonium抑制,并讨论这些可观察者是否显示出QGP液滴产生的任何指示。

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