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Evolution of the mean jet shape and dijet asymmetry distribution of an ensemble of holographic jets in strongly coupled plasma

机译:强耦合等离子体中全息喷射集合的平均喷射形状和Dijet不对称分布的演变

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A bstract Some of the most important experimentally accessible probes of the quark- gluon plasma (QGP) produced in heavy ion collisions come from the analysis of how the shape and energy of sprays of energetic particles produced within a cone with a specified opening angle (jets) in a hard scattering are modified by their passage through the strongly coupled, liquid, QGP. We model an ensemble of back-to-back dijets for the purpose of gaining a qualitative understanding of how the shapes of the individual jets and the asymmetry in the energy of the pairs of jets in the ensemble are modified by their passage through an expanding cooling droplet of strongly coupled plasma, in the model in a holographic gauge theory that is dual to a 4+1-dimensional black-hole spacetime that is asymptotically anti-de Sitter (AdS). We build our model by constructing an ensemble of strings in the dual gravitational description of the gauge theory. We model QCD jets in vacuum using strings whose endpoints are moving “downward” into the gravitational bulk spacetime with some fixed small angle, an angle that represents the opening angle (ratio of jet mass to jet energy) that the QCD jet would have in vacuum. Such strings must be moving through the gravitational bulk at (close to) the speed of light; they must be (close to) null. This condition does not specify the energy distribution along the string, meaning that it does not specify the shape of the jet being modeled. We study the dynamics of strings that are initially not null and show that strings with a wide range of initial conditions rapidly accelerate and become null and, as they do, develop a similar distribution of their energy density. We use this distribution of the energy density along the string, choose an ensemble of strings whose opening angles and energies are distributed as in perturbative QCD, and show that we can then fix one of the two model parameters such that the mean jet shape for the jets in the ensemble that we have built matches that measured in proton-proton collisions reasonably well. This is a novel way for hybridizing relevant inputs from perturbative QCD and a strongly coupled holographic gauge theory in the service of modeling jets in QGP. We send our ensemble of strings through an expanding cooling droplet of strongly coupled plasma, choosing the second model parameter so as to get a reasonable value for R ~( AA )_(jet) , the suppression in the number of jets, and study how the mean jet shape and the dijet asymmetry are modified, comparing both to measurements from heavy ion collisions at the LHC.
机译:Bstract在重离子碰撞中产生的夸克血浆血浆(QGP)中的一些最重要的实验可访问探针来自分析具有指定开口角度(喷射器)在硬散射中,通过它们的通道通过强耦合的液体,QGP来修改。我们模拟了背靠背Dijets的集合,以便获得定性了解单个喷射器的形状和集合中的喷射对的能量的形状如何通过它们的通道通过膨胀冷却来修改强耦合等离子体的液滴,在全息仪表理论中的模型中,是双向一个4 + 1维黑洞时空,即渐近抗DE空间(广告)。我们通过在规范理论的双重重力描述中构造串的集合来构建我们的模型。我们使用串行投影点与一些固定小角度将“向下”移动到引力散装时空的琴弦,这是一种角度,该QCD喷射器在真空中,该角度表示QCD射流在真空中具有QCD射流的开口角度(喷射物质与喷射能量的比率)的角度。这种琴弦必须通过引力散装(接近)的光速移动;它们必须(靠近)零。此条件不指定沿线的能量分布,这意味着它不指定被建模的喷射器的形状。我们研究了最初没有空缺的串的动态,并显示具有广泛初始条件的字符串快速加速并变为空,并且可以发展其能量密度的类似分布。我们沿着字符串使用这种能量密度的分布,选择一个串的集合,其开口角度和能量分布在扰动QCD中,然后显示我们可以修复两个模型参数之一,使得平均喷射形状我们在合奏中的喷气机建立了在质子 - 质子碰撞中测量的匹配。这是一种新的方法,用于杂交来自扰动QCD的相关输入以及QGP中模拟喷射器的频率强烈耦合全息仪理论。我们通过强大的耦合等离子体的扩展冷却液滴发送我们的串集合,选择第二个模型参数,以获得R〜(AA)_(喷气机)的合理值,在喷射器的数量中抑制,并研究如何改变平均喷射形状和Dijet不对称,比较LHC的重离子碰撞的测量。

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