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Enhancement of the H ± W ? Z vertex in the three scalar doublet model

机译:增强<重点类型=“斜体”> h <重点类型=“斜体”> w Z 顶点三个标量级

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We compute one-loop induced trilinear vertices with physical charged Higgs bosons H _(±) and ordinary gauge bosons, i.e., H _(±) W _(?) Z and H _(±) W _(?) γ , in the model with two active plus one inert scalar doublet fields under a Z ~(2)(unbroken) × Z ? 2 $$ {ilde{Z}}_2 $$ (softly-broken) symmetry. The Z ~(2) and Z ? 2 $$ {ilde{Z}}_2 $$ symmetries are introduced to guarantee the stability of a dark matter candidate and to forbid the flavour changing neutral current at the tree level, respectively. The dominant form factor F ~( Z ) of the H _(±) W _(?) Z vertex can be enhanced by effects of extra scalar boson loop contributions. We find that, in such a model, | F ~( Z )|_(2) can be one order of magnitude larger than that predicted in two Higgs doublet models, under the constraints from vacuum stability, perturbative unitarity and the electroweak precision observables. In addition, the branching fraction of the H _(±) → W _(±) Z ( H _(±) → W _(±) γ ) mode can be of order 10 (1)% level when the mass of H _(±) is below the top quark mass. Such a light H _(±) is allowed by the so-called Type-I and Type-X Yukawa interactions which appear under the classification of the Z ? $$ ilde{Z} $$ charge assignment of the quarks and leptons. We also calculate the cross sections for the processes H _(±) → W _(±) Z and H _(±) → W _(±) γ onset by the top quark decay t → H _(±) b and electroweak H _(±) production at the LHC.
机译:我们计算一圈引起的三线性顶点,用物理带电的Higgs玻色子H _(±)和普通的仪表磁杆,即H _(±)W _(α)Z和H _(±)W _(?)γ,在z〜(2)(不间断)×z下面的两个活动加上一个有效加上一个惰性标量的模型? 2 $$ { tilde {z}} _ 2 $$(软体破碎)对称。 z〜(2)和z? 2 $$ { tilde {z}} _ 2 $$对称性被介绍,以保证暗物质候选人的稳定性,并分别禁止在树级改变中性电流的风味。可以通过额外的标量玻色子循环贡献来提高H _(±)W _(α)Z顶点的主导外形F〜(z)。我们发现,在这样的模型中,| F〜(z)| _(2)可以是比真空稳定性,扰动统治性和电牛皮精度可观察的约束下方的一个数量级大于两个HIGGS双峰模型。另外,H _(±)→W _(±)Z(H _(±)→W _(±)γ)模式的分支级分可以是H质量的10(1)%的级别_(±)低于顶部夸克质量。所谓的I型-I和X Yukawa交互允许这样的光H _(±),其出现在Z的分类下? $$ tilde {z} $$充电分配夸克和leptons。我们还通过顶部夸克衰减T→H _(±)B和Electroweak来计算H _(±)→W _(±)→和H _(±)γ→W _(±)γ→W_(±)γ→α H _(±)生产在LHC。

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