利用ALICE在大型强子对撞机上探索pp碰撞奇异性增强的多差分研究

C. De Martin
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引用次数: 0

摘要

在高多重性的强子相互作用中,(多)奇异强子的相对产率相对于在低多重性下测量的产率有所提高,并达到重离子碰撞中观察到的值。这一惊人现象的微观起源,历史上被解释为重离子碰撞中夸克-胶子等离子体(QGP)形成的标志,仍然是未知的:它与软粒子产生有关,还是与硬散射事件有关,比如喷流?它只与最终粒子的多重性有关,还是也取决于初始状态效应?ALICE实验通过在√B = 13 TeV的pp碰撞中进行专门的测量来解决这些问题。为了将射流中产生的奇怪强子与软过程中产生的奇怪强子分开,高-?带电粒子和奇异强子已被利用。研究了k0 S andΞ的近侧射流产率和出射流产率与pp碰撞产生的带电粒子数的关系。此外,还进行了多微分分析,将最终态多重性的贡献与产生奇异粒子的有效能量的贡献分离开来。通过从质心能量中减去零度量热仪(ZDC)测量的能量,估计出了有效能量。结果表明,软过程(即射流外)是奇异粒子产生的主要因素,而初始态性质在奇异粒子产生中起不重要作用,奇异粒子产生主要由最终粒子的多样性驱动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-differential studies to explore strangeness enhancement in pp collisions with ALICE at the LHC
The relative production rate of (multi-)strange hadrons in high multiplicity hadronic interactions is enhanced with respect to the one measured at lower multiplicities and reaches values observed in heavy-ion collisions. The microscopic origin of this striking phenomenon, historically interpreted as a signature of quark-gluon plasma (QGP) formation in heavy-ion collisions, is still unknown: is it related to soft particle production or to hard scattering events, such as jets? Is it related to final particle multiplicity only or does it also depend on initial state effects? The ALICE experiment has addressed these questions by performing dedicated measurements in pp collisions at √ B = 13 TeV. To separate strange hadrons produced in jets from those produced in soft processes, the angular correlation between high-?T charged particles and strange hadrons has been exploited. The nearside jet yield and the out-of-jet yield ofK0 S andΞ have been studied as a function of the multiplicity of charged particles produced in pp collisions. Moreover, a multi-differential analysis has been carried out to disentangle the contribution of final state multiplicity from the one of effective energy available for strange particle production. The effective energy has been estimated by subtracting the energy measured in the Zero Degree Calorimeters (ZDC) from the centre-of-mass energy. The results suggest that soft (i.e. out-of-jet) processes are the dominant contribution to strange particle production and that initial state properties do not play a significant role in strangeness production, which is mainly driven by final particle multiplicity.
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