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Searching for Dark Matter with the ATLAS Detector in Events with an Energetic Jet and Large Missing Transverse Momentum

机译:在带有高能喷射和大的横向动量的事件中使用ATLAS探测器寻找暗物质

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摘要

Hadron colliders, such as the Large Hadron Collider (LHC), principally produce events involving hadronic activity. Such activity is typically modelled by jets, which provide a useful representation of the underlying physics. Given the ubiquity of jets in LHC events, it becomes important to ensure that their properties and performance are well understood. The full approach to jet reconstruction and calibration, as used by the ATLAS Experiment, is detailed with a focus on recent improvements. The systematic uncertainties associated with jets are quantified, with the procedures and resulting reductions in uncertainties thoroughly detailed. Extra attention is placed on the treatment of high energy jets, and particularly the impact of inactive calorimeter regions and calorimeter non-containment (punch-through). The mono-jet topology is presented as an analysis where high energy jets are particularly relevant. This search makes use of very high missing transverse momentum balanced purely by jets, enabling measurements of the production cross-section of new physics processes producing weakly interacting particles. The full Standard Model background determination is shown, and the data are seen to be consistent with the Standard Model expectations. Limits are set on the visible cross-section for new physics processes. The results are interpreted as a search for the pair-production of Dark Matter (DM), both through Effective Field Theories (EFTs) and simplified models. Scenarios where the DM is either a scalar or fermionic particle are both considered. The validity of the EFT approach is thoroughly investigated, providing the first complete collider study into all relevant interaction types. Limits are then set on the EFT suppression scale, the WIMP-nucleon scattering cross-section, and the WIMP annihilation cross-section in order to compare with other types of DM experiments. The simplified model is used to conduct a full parameter-space scan of the mono-jet sensitivity to a wide range of conditions. First projections for the mono-jet analysis at an upgraded LHC are presented, demonstrating the significant gain in both discovery potential and limit sensitivity that accompanies higher collision energies. The analysis is projected to double in sensitivity in the coming year, hinting at the exciting times to come.
机译:强子对撞机,例如大型强子对撞机(LHC),主要产生涉及强子活动的事件。此类活动通常由喷射建模,喷射提供了基础物理学的有用表示。鉴于在大型强子对撞机事件中喷气式飞机无处不在,确保对喷气式飞机的性能和性能有充分的了解就变得很重要。详细介绍了ATLAS实验所采用的完整的射流重建和校准方法,重点是最近的改进。对与喷气机相关的系统不确定性进行了量化,并详细说明了程序和不确定性的减少。要特别注意高能射流的处理,尤其是不活跃的热量计区域和热量计的非封闭性(穿通)的影响。单射流拓扑是作为分析而提出的,其中高能射流特别重要。该搜索利用了完全由射流平衡的非常高的缺失横向动量,从而能够测量产生弱相互作用粒子的新物理过程的生产截面。显示了完整的标准模型背景确定值,并且数据与标准模型期望值一致。在新的物理过程的可见横截面上设置了限制。结果被解释为通过有效场论(EFT)和简化模型来寻找暗物质(DM)的配对产品。都考虑了DM是标量粒子或费米离子粒子的情况。对EFT方法的有效性进行了彻底研究,为所有相关交互类型提供了首次完整的对撞机研究。然后在EFT抑制比例,WIMP-核子散射截面和WIMP ni没截面上设置极限,以便与其他类型的DM实验进行比较。简化的模型用于对各种条件下的单喷嘴敏感性进行完整的参数空间扫描。提出了升级后的大型强子对撞机进行单喷射分析的初步预测,表明了发现潜力和极限灵敏度伴随着较高碰撞能量的显着提高。预计该分析在来年的敏感性会提高一倍,这预示着即将到来的激动人心的时刻。

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