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Prospects for Identification the Direct and Indirect Effects of Extra Spatial Dimensions at the Large Hadron Collider

机译:展望大型强子撞机额外空间尺寸的直接和间接影响的前景

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摘要

The existence of massive graviton states, that may be produced as real and virtual particles in high-energy proton collisions, is predicted by the modern developments of Kaluza-Klein models with extra spatial dimensions. The direct and indirect signatures of large and warped extra spatial dimensions may be revealed by analyzing the specific characteristics of dilepton and diphoton final states formed in proton-proton collisions at the Large Hadron Collider (LHC). Virtual effects in the Kaluza-Klein models with large extra spatial dimensions can be discovered by the specic behavior of the dilpton and diphoton invariant-mass distributions, and their identication (in case of discovery) can be performed by the analysis of their angular distributions with integrated center-edge asymmetry. Assuming the nominal values of the LHC collision energy (14 TeV) and luminosity (100 fb(-1)), for the models with large extra spatial dimensions we find that the sensitivity to the cutoff parameter M (S) will extend up to 8.5 and 7.6 TeV for their discovery and identification, respectively. For the Randall-Sundrum model with a warped extra dimension, the LHC experiments will be sensitive to the graviton resonance with mass up to 4.4 and 3.1 TeV for its discovery and identification, respectively.
机译:在高能量质子碰撞中的现实和虚拟粒子中,可以生产大规模的格子状态的存在,这是由Kaluza-Klein模型的现代发展,具有额外的空间尺寸。可以通过分析大型强子撞机(LHC)在质子 - 质子碰撞中形成的Dilepton和Diphoton最终状态的特定特征来揭示大型和扭曲额外空间尺寸的直接和间接签名。通过稀释额外的额外空间尺寸的Kaluza-klein模型中的虚拟效果可以通过Dilpton和Diphoton不变 - 质量分布的具体行为来发现,并且它们的识别(在发现)中可以通过分析它们的角度分布来执行集成中心边缘不对称。假设LHC碰撞能量(14 TEV)和亮度(100 FB(-1))的标称值,对于具有大额外空间尺寸的型号,我们发现截止参数M的敏感性将延伸到8.5 7.6 TEV分别用于他们的发现和识别。对于具有翘曲额外尺寸的Randall-Sundrum模型,LHC实验将分别对大约4.4和3.1 Tev的大量的墓穴敏感,分别用于其发现和鉴定。

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  • 来源
    《Physics of particles and nuclei》 |2017年第3期|共40页
  • 作者单位

    Gomel State Tech Univ Abdus Salam Int Ctr Theoret Phys Affiliated Ctr Gomel 246746 Byelarus;

    Gomel State Tech Univ Abdus Salam Int Ctr Theoret Phys Affiliated Ctr Gomel 246746 Byelarus;

    Gomel State Tech Univ Abdus Salam Int Ctr Theoret Phys Affiliated Ctr Gomel 246746 Byelarus;

    Joint Inst Nucl Res Lab Nucl Problems Dubna 141980 Moscow Oblast Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 粒子物理学;
  • 关键词

  • 入库时间 2022-08-20 06:17:38

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