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Heavy Ion Physics with the ATLAS Detector

机译:ATLAS探测器的重离子物理

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Soon after the LHC is commissioned with proton beams the ATLAS experiment will begin studies of Pb-Pb collisions with a center of mass energy of s~(1/2)_(NN) =5.5 TeV. The ATLAS program is a natural extension of measurements at RHIC in a direction that exploits the higher LHC energies and the superb ATLAS calorimeter and tracking coverage. At LHC energies, collisions will be produced with even higher energy density than observed at RHIC. The properties of the resulting hot medium can be studied with higher energy probes, which are more directly interpreted through modification of jet properties emerging from these collisions, for example. Other topics which are enabled by the 30-fold increase in center of mass energy include probing the partonic structure of nuclei with deep inelastic photoproduction (in UltraPeripheral Collisions) and in p-Pb collisions. Here we report on evaluation of ATLAS capabilities for Heavy Ion Physics.
机译:质子束委托大型强子对撞机后不久,ATLAS实验将开始研究质能中心为s〜(1/2)_(NN)= 5.5 TeV的Pb-Pb碰撞。 ATLAS计划是RHIC测量的自然扩展,其方向是利用较高的LHC能量以及出色的ATLAS量热计和跟踪覆盖范围。在LHC能量下,将产生比RHIC更高的能量密度碰撞。可以使用更高能量的探针研究所得热介质的特性,例如,可以通过修改这些碰撞产生的射流特性来更直接地解释这些特性。通过质子中心增加30倍而实现的其他主题包括利用深的非弹性光产生(在UltraPeripheral Collisions中)和p-Pb碰撞来探测原子核的部分结构。在这里,我们报告对重离子物理ATLAS功能的评估。

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