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首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Azimuthally differential pion femtoscopy relative to the second and third harmonic in Pb-Pb 2.76 TeV collision from ALICE
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Azimuthally differential pion femtoscopy relative to the second and third harmonic in Pb-Pb 2.76 TeV collision from ALICE

机译:方目差异剖腹术术相对于艾丽斯的PB-PB 2.76 TEV碰撞中的第二和三次谐波

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摘要

Azimuthally differential femtoscopic measurements, being sensitive to spatio-temporal characteristics of the source as well as to the collective velocity fields at freeze-out, provide very important information on the nature and dynamics of the system evolution. While the HBT radii modulations relative to the second harmonic event plane reflect mostly the spatial geometry of the source, the third harmonic results are mostly defined by the velocity fields [1]. Radii variations with respect to the third harmonic event plane unambiguously signal a collective expansion and anisotropy in the flow fields. Event shape engineering (ESE) is a technique proposed to select events corresponding to a particular shape. Azimuthally differential HBT combined with ESE allows for a detailed analysis of the relation between initial geometry, anisotropic flow and the deformation of source shape. We present azimuthally differential pion femtoscopy with respect to second and third harmonic event planes as a function of the pion transverse momentum for different collision centralities in Pb Pb collisions at root s(NN) = 2.76 TeV. All these results are compared to existing models. The effects of the selection of the events with high elliptic or triangular flow are also presented.
机译:方形差分幻觉测量,对源的时空特性敏感,以及冻结的集体速度场,提供了关于系统演化的性质和动态的非常重要的信息。虽然相对于第二谐波事件平面的HBT半径调制主要反映源的空间几何形状,但是第三谐波结果主要由速度场定义[1]。关于第三次谐波事件平面的半径变化明确地用信号在流场中的集体膨胀和各向异性发出信号。事件形状工程(ESE)是提出选择与特定形状相对应的事件的技术。方目差异的HBT与ESE结合允许详细分析初始几何形状,各向异性流动与源形状变形之间的关系。我们以不同的碰撞中心在根S(nn)= 2.76 tev的Pb Pb碰撞中的不同碰撞中心的π横向动量的函数中呈现方位差异的差异剖视图。所有这些结果都与现有模型进行了比较。还提出了具有高椭圆形或三角形流动的事件的选择的影响。

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