Multiple-point principle realized with strong dynamics

Multiple-point principle realized with strong dynamics
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强动力实现多点原理

DOI:
10.1103/physrevd.95.115015
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发表时间:
2017
期刊:
影响因子:
5
通讯作者:
Yamada Toshifumi
Yamada Toshifumi
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Haba Naoyuki;Yamada Toshifumi

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我们提出了标准模型的新颖扩展,它满足多点原理而不与希格斯粒子质量测量相矛盾。在模型中,标量势有两个最小值,其中标量场的真空期望值为 246 GeV 和普朗克质量,后者是通过考虑经典尺度不变设置并要求标量四次耦合及其 beta 函数在普朗克尺度上消失来实现的。标准模型希格斯场是一种新的强耦合规范理论中基本标量和复合标量的混合体,强动力学使SM希格斯场产生负质量,同时导致SM希格斯四次耦合和基本标量的四次耦合分离,导致后者四次耦合及其在普朗克尺度上的β函数消失。该模型预测质量约为 300 GeV 的新标量粒子,具有电弱电荷和与标准模型费米子的汤川型耦合,以及与标准模型费米子耦合的新光规玻色子。
We present a novel extension of the Standard Model which fulfills the multiple-point principle without contradicting the Higgs particle mass measurement. In the model, the scalar potential has two minima where the scalar field has vacuum expectation values of 246 GeV and the Planck mass, the latter of which is realized by considering a classically scale invariant setup and requiring that the scalar quartic coupling and its beta function vanish at the Planck scale. The Standard Model (SM) Higgs field is a mixture of an elementary scalar and composite scalars in a new strongly coupled gauge theory, and the strong dynamics gives rise to the negative mass for the SM Higgs field, and at the same time causes separation of the SM Higgs quartic coupling and the quartic coupling for the elementary scalar, which leads to the vanishing of the latter quartic coupling and its beta function at the Planck scale. The model predicts new scalar particles with about 300 GeV mass possessing electroweak charges and Yukawa-type couplings with Standard Model fermions, and a new light gauge boson that couples to Standard Model fermions.
来自真空边缘亚稳态的标准模型希格斯玻色子质量
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