干涉凝聚体Goldstone玻色子下的监护破缺和SUSY 2HDM破缺

IF 1.5 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
Hani W. Maalouf
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引用次数: 0

摘要

希格斯凝聚体与超对称2HDM扩展的最小版本一起被证明,当包含超对称时,它可以在CPC和CPV干涉中发挥振子的作用,直到via[公式:见文本]。在不带电的希格斯粒子中(将不带电的戈德斯通玻色子与自发破碎的类似sm的希格斯粒子进行比较),对称的[公式:见文]和反对称的[公式:见文]的线性组合和一个重新缩放的[公式:见文],其中[公式:见文][公式:见文]GeV和[公式:见文][公式:见文]GeV的质量,例如在凝聚体的边界撞击下。[公式:见文]s的范围将取决于组成的单线态和三重态可以交换的地方,然后,它们在具有goldstone型有序质量[公式:见文][公式:见文]GeV的三重点过渡中接近看守超对称性,以及进入它们的暗物质部门的截止[公式:见文],(包括[公式:见文])高达阶1.7[公式:见文]TeV。这将为测量超对称的存在开辟一条道路,至少间接地,通过任何违反希格斯衰变的主导地位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Custodial and SUSY 2HDM breaking under interfering condensates’ Goldstone bosons
The Higgs condensates are proven along with the minimal versions of the hyper-symmetric 2HDM extensions when containing Supersymmetry that can play the role of oscillators for the CPC and CPV interferences, up to via [Formula: see text]. With the uncharged Higgs inclusion (considering the uncharged Goldstone Bosons compared to the spontaneously broken SM-like Higgs), the symmetric [Formula: see text] and anti-symmetric [Formula: see text] linear combinations of an ‘[Formula: see text]’ and a rescaled [Formula: see text], where masses of [Formula: see text][Formula: see text]GeV and [Formula: see text][Formula: see text]GeV, such as under the condensate’s boundary impacts. The range of the [Formula: see text]s would be up to where the composed singlet and triplet can interchange, then, they approach the Custodial SUSY at a Triple point transition with a Goldstone-type order mass [Formula: see text][Formula: see text]GeV, as well into their Dark Matter sectors’ cut-off [Formula: see text], (including [Formula: see text]) up to order 1.7[Formula: see text]TeV. That will lead to opening the way to measure the existence of Supersymmetry, indirectly at the least, through any dominance of [Formula: see text]-violating Higgs decays.
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来源期刊
Modern Physics Letters A
Modern Physics Letters A 物理-物理:核物理
CiteScore
3.10
自引率
7.10%
发文量
186
审稿时长
3 months
期刊介绍: This letters journal, launched in 1986, consists of research papers covering current research developments in Gravitation, Cosmology, Astrophysics, Nuclear Physics, Particles and Fields, Accelerator physics, and Quantum Information. A Brief Review section has also been initiated with the purpose of publishing short reports on the latest experimental findings and urgent new theoretical developments.
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