在大型强子对撞机上用蒙特卡罗事件发生器研究pp碰撞中带电粒子多重性波动

E. Shokr, A. El-farrash, A. De Roeck, M. Mahmoud
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引用次数: 1

摘要

模拟了大型强子对撞机(LHC)上的质子-质子($pp$)碰撞,以研究在$\Delta\eta$ = 0.1, 0.2和0.5的窄伪快度窗口中产生的高局部带电粒子密度的事件。$pp$碰撞是在质心能量$\sqrt{s} = 2.36$, $7$, $8$和$13$ TeV处产生的,即LHC迄今为止运行的能量,使用PYTHIA和HERWIG事件发生器。我们还使用不同的伪快度窗口研究了所有事件的最大带电粒子密度与事件多重性的平均值。本研究为未来利用大型强子对撞机数据寻找异常高密度多重涨落所期望的多粒子产生背景做了准备。
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Study of charged-particle multiplicity fluctuations in pp collisions with Monte Carlo event generators at the LHC
Proton-Proton ($pp$) collisions at the Large Hadron Collider (LHC) are simulated in order to study events with a high local density of charged particles produced in narrow pseudorapidty windows of $\Delta\eta$ = 0.1, 0.2, and 0.5. The $pp$ collisions are generated at center of mass energies of $\sqrt{s} = 2.36$, $7$, $8$, and $13$ TeV, i.e. the energies at which the LHC has operated so far, using PYTHIA and HERWIG event generators. We have also studied the average of the maximum charged-particle density versus the event multiplicity for all events, using the different pseudorapidity windows. This study prepares for the multi-particle production background expected in a future search for anomalous high-density multiplicity fluctuations using the LHC data.
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