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The Relationship Between the Soft and Hard Ridges

机译:软脊和硬脊之间的关系

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Two particle correlation measurements in relativistic heavy ion collisions show a 'ridge' of correlated particle pairs not seen in proton on proton collisions. The measured two-dimentional correlation landscape resembles a mountain ridge since correlated pairs are focused into a narrow regions of relative azimuthal angle, but can extend to a long range in relative pseudorapidity. Similar ridge structures are observed in correlations of particles associated with and without a jet trigger. Explanations, with and without a jet, are challenged to explain the long range pseudorapidity behavior of correlations where causality limits the influence of transport dynamics. Glasma initial conditions as predicted by the theory of Color Glass Condensate provide a and early stage correlation that naturally extends far in rapidity. We have previously shown that the soft ridge is a consequence of particles forming from an initial Glasma phase that experience a later stage transverse flow. We extend this work to study the ridge dependence on the pt of the correlated pairs and determine the relationship between the triggered and untriggered measurements.
机译:相对论重离子碰撞中的两个粒子相关性测量结果显示,质子碰撞中质子中未发现相关粒子对的“脊线”。测得的二维相关景观类似于山脊,因为相关对集中在相对方位角的狭窄区域中,但是可以在相对较快的范围内扩展到很长的范围。在有和没有喷射触发的情况下,在颗粒的相关性中观察到类似的脊结构。在有或没有喷射的情况下,解释都面临挑战,以解释因果关系限制运输动力学影响的相关性的远距离伪快速行为。如彩色玻璃冷凝物理论所预测的那样,玻璃初始条件提供了与早期的相关性,该相关性自然而然地迅速扩展了。先前我们已经表明,软脊是由初始格拉斯玛相形成的颗粒的结果,该颗粒经历了后期的横向流动。我们扩展了这项工作,以研究对相关对的pt的岭依赖性,并确定触发和未触发测量之间的关系。

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