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Probing new physics of cubic Higgs boson interaction via Higgs pair production at hadron colliders

机译:HADRON Ploriders Higgs对生产立方HGGS玻色子互动探讨新物理学

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摘要

Despite the discovery of a Higgs boson h (125 GeV) at the LHC run 1, its self-interaction has fully evaded direct experimental probe so far. Such self-interaction is vital for electroweak symmetry breaking, vacuum stability, and electroweak phase transition. It is a most likely place to encode new physics beyond the standard model. We parametrize such new physics by model-independent dimension-six effective operators and study their tests via Higgs pair production at hadron colliders. We analyze three major di-Higgs production channels at the parton level and compare the parameter dependence of total cross sections and kinematic distributions at the LHC (14 TeV) and pp (100 TeV) hadron collider. We further perform full simulations for the di-Higgs production channel gg -> hh -> b (b) over bar gamma gamma and its backgrounds at the pp (100 TeV) hadron collider. We construct four kinds of benchmark points and study the sensitivities to probing different regions of the parameter space of cubic Higgs interactions. We find that for a one-parameter analysis and with a 3 ab(-1) (30 ab(-1)) integrated luminosity, the ggg -> hh -> b (b) over bar gamma gamma channel can measure the SM cubic Higgs coupling and the derivative cubic Higgs coupling to an accuracy of about 13% (4.2%) and 5% (1.6%), respectively.
机译:尽管在LHC运行中发现了HIGGS BOSON H(125 GEV),但其自相互作用迄今已完全逃避直接实验探头。这种自相互作用对于Electroweak对称性断裂,真空稳定性和电壕相的转变至关重要。它是编码超出标准模型的新物理的最有可能的地方。我们通过模型 - 独立的维度 - 六种有效运营商参加了这种新物理学,并通过HIGRON煤机的HIGGS对生产进行了研究。我们在Parton级分析了三个主要的Di-Higgs生产渠道,并比较了LHC(14 TEV)和PP(100 TEV)Hadron Collifer的总横截面和运动分布的参数依赖性。我们进一步对Di-Higgs生产通道GG - > HH - > B(b)的全部模拟在PP(100 TEV)Hadron Collier的PP(100 TEV)上。我们构建四种基准点,并研究了立方HGGS交互参数空间探测不同区域的敏感性。我们发现,对于一个参数分析和3 AB(-1)(30Ab(-1))集成亮度,GGG - > HH - > B(B)上方的伽马伽玛通道可以测量SM立方体HIGG耦合和衍生立方HIGG分别偶联至约13%(4.2%)和5%(1.6%)的精度。

著录项

  • 来源
    《Physical review, D》 |2016年第1期|共22页
  • 作者单位

    Tsinghua Univ Inst Modern Phys Beijing 100084 Peoples R China;

    Univ Toronto Dept Phys Toronto ON M5S 1A7 Canada;

    Univ Calif Berkeley Lawrence Berkeley Natl Lab Berkeley CA 94720 USA;

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

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