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Physics beyond the Standard Model: Supersymmetry, dark matter, and LHC phenomenology.

机译:标准模型之外的物理:超对称,暗物质和LHC现象学。

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摘要

The Standard Model (SM) of particle physics is remarkably successful and has survived two decades of precision tests at high energy particle accelerators. However, it is known to be incomplete, and there are reasons to believe that there is new physics at energy scales that will soon be probed in greater detail than ever before by the Large Hadron Collider (LHC), a proton-proton accelerator being built near Geneva.;This thesis contains a diverse set of topics that may broadly be described as physics beyond the SM.;In Chapter 2, implications of current experimental constraints are presented for the stop masses and mixing in the Minimal Supersymmetric Standard Model (MSSM), a well-motivated candidate for physics beyond the SM. It is found, for example, that lower bounds on the stop masses are as large as 1 TeV assuming no stop-mixing.;Chapter 3 presents the regions in the MSSM with the minimal amount of fine-tuning of electroweak symmetry breaking. The minimal amount of tuning increases enormously for a Higgs mass beyond 120 GeV.;Supersymmetry cannot be an exact symmetry, and one possibility is that our Universe is in a long-lived metastable state with broken supersymmetry. In Chapter 4, a generic model with this property is constructed in which all the relevant parameters, including the supersymmetry breaking scale, are generated dynamically. This model has several interesting model-building features including an explicitly and spontaneously broken R-symmetry, a singlet, a large global symmetry, naturalness, renormalizability, and a "pseudo-runaway" direction.;In Chapter 5, a simple extension of the SM with weakly interacting non-chiral dark matter particles is presented. Such particles can be detected at a future direct-detection experiment.;There are a wide variety of possible discovery signatures for new physics at the LHC. A discovery signature with a large SM background that has not been well studied involves multijet events without leptons and/or missing energy. In Chapter 6, it is found that using innovative search strategies pair production of new coloured adjoint fermions producing a pure six-jet final state can be detected up to a mass of about 650-700 GeV with 10 fb -1 of integrated luminosity.
机译:粒子物理学的标准模型(SM)非常成功,并且在高能粒子加速器的精密测试中幸存了二十年。但是,众所周知,它是不完整的,有理由相信,在能量尺度上有新的物理学将很快被建造的质子-质子加速器大型强子对撞机(LHC)进行比以往更详细的探究。日内瓦附近;本论文包含了一系列广泛的主题,可以广泛地描述为SM以外的物理。 ,是超越SM的充满动力的物理学候选人。例如,发现在不进行停止混合的情况下,停止质量的下限最大为1 TeV。;第3章介绍了MSSM中微弱的电弱对称破坏微调区域。对于超过120 GeV的希格斯质量,最小的调整量会极大地增加;超对称性不可能是精确的对称性,并且一种可能性是我们的宇宙处于超稳定的长寿命亚稳态。在第4章中,构建了具有此属性的通用模型,其中动态生成了所有相关参数,包括超对称破坏尺度。该模型具有几个有趣的模型构建功能,包括显式和自发地打破R对称性,单重态,大的全局对称性,自然性,可归一化性和“伪失控”方向。;在第5章中,对模型的简单扩展提出了具有弱相互作用的非手性暗物质颗粒的SM。可以在将来的直接检测实验中检测到此类粒子。;大型强子对撞机的新物理学有多种可能的发现特征。尚未充分研究的具有大SM背景的发现签名涉及多射流事件,没有轻子和/或能量损失。在第6章中,发现使用创新的搜索策略,可以检测出产生纯六射流最终状态的新有色伴随费米子的成对,质量高达650-700 GeV,综合光度为10 fb -1。

著录项

  • 作者

    Essig, Rouven.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Physics Theory.;Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 230 p.
  • 总页数 230
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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