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Effects of a real singlet scalar on Veltman condition

机译:真正的单重态标量对Veltman条件的影响

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We revisit the fine-tuning problem in the Standard Model (SM) and show the modification in the Veltman condition by virtue of a minimally-extended particle spectrum with one real SM gauge singlet scalar field. We demand the new scalar to interact with the SM fields through Higgs portal only, and the new singlet to acquire a vacuum expectation value, resulting in a mixing with the CP-even neutral component of the Higgs doublet in the SM. The experimental bounds on the mixing angle are determined by the observed best-fit signal strengthσ/σSM. While, the one-loop radiative corrections to the Higgs mass squared, computed with an ultraviolet cut-off scaleΛ, come with a negative coefficient, the quantum corrections to the singlet mass squared acquire both positive and negative values depending on the parameter space chosen, which if positive might be eliminated by introducing singlet or doublet vector-like fermions. However, based upon the fact that there is mixing between the scalars, when transformed into the physical states, the tree-level coupling of the Higgs field to the vector-like fermions worsens the Higgs mass hierarchy problem. Therefore, the common attempt to introduce vector-like fermions to cancel the divergences in the new scalar mass might not be a solution, if there is mixing between the scalars.
机译:我们回顾了标准模型(SM)中的微调问题,并通过具有一个真实SM标尺单重态标量场的最小扩展粒子光谱,展示了Veltman条件下的修改。我们要求新标量仅通过希格斯门户与SM字段进行交互,并且要求新的单重态获得真空期望值,从而导致与SM中希格斯双态的CP甚至中性成分混合。混合角的实验界限由观察到的最佳拟合信号强度σ/σSM确定。虽然用紫外线截止尺度Λ计算出的对希格斯平方的单环辐射校正带有负系数,但对单线质量平方的量子校正根据选择的参数空间获得正值和负值,如果是阳性的话,可以通过引入单重态或双重态矢量样费米子来消除。但是,基于标量之间存在混合的事实,当转换为物理状态时,希格斯场与矢量型费米子的树级耦合会使希格斯质量层次问题恶化。因此,如果在标量之间存在混合,引入矢量状费米子以消除新标量质量中的发散的常规尝试可能不是解决方案。

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