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A family-universal anomalous U(1) in string models as the origin of supersymmetry breaking and squark degeneracy

机译:字符串模型中的家庭普遍异常U(1)作为超对称破坏和平方退化的起源

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Recently a promising mechanism for supersymmetry breaking that utilizes both an anomalous U(1) gauge symmetry and an effective mass term m similar to 1 TeV of certain relevant fields has been proposed. In this paper we examine whether such a mechanism can emerge in superstring-derived free fermionic models. We observe that certain three-generation string solutions, though not all, lead to an anomalous U(1) which couples universally to all three families. The advantages of this three-family universality of U(I)A, compared to the two-family case, proposed in earlier works, in yielding squark degeneracy, while avoiding radiative breaking of color and charge, are noted. The root cause of the flavor universality of U(1)A is the cyclic permutation symmetry that characterizes the Z(2) x Z(2) orbifold compactification with standard embedding, realized in the free fermionic models by the NAHE set. It is shown that non-renormalizable terms which contain hidden-sector condensates, generate the required suppression of the relevant mass term m, compared to the Planck scale. While the D-term of the family-universal U(1)A leads to squark degeneracy those of the family-dependent U(1)'s, remarkably enough, are found to vanish for the solutions considered, owing to minimization of the potential. Motivations are provided for the combined U(1)A-Dilaton SUSY breaking. (C) 1998 Elsevier Science B.V. [References: 83]
机译:最近,提出了一种有前途的超对称断裂机制,该机制利用了异常的U(1)规范对称性和类似于某些相关领域的1 TeV的有效质量项m。在本文中,我们研究了这种机制是否可以在超弦衍生的自由铁离子模型中出现。我们观察到,虽然不是全部,但某些三代字符串解决方案会导致异常的U(1),它普遍耦合到所有三个家族。与早期工作中提出的两族情况相比,U(I)A的这种三族通用性的优点是在避免引起色和电荷的辐射破坏的同时,产生了方括号简并。 U(1)A的风味通用性的根本原因是循环置换对称性,该对称性表征了具有标准嵌入的Z(2)x Z(2)双歧化紧实,通过NAHE集在自由铁离子模型中实现。结果表明,与普朗克尺度相比,包含隐藏扇区凝结水的不可重整项会产生对相关质量项m的抑制。虽然家族通用U(1)A的D项导致了squark退化,但由于潜在的最小化,发现家族依赖的U(1)的D项对于考虑的解决方案已经消失了。提供了合并的U(1)A-Dilaton SUSY破坏的动机。 (C)1998 Elsevier Science B.V. [参考:83]

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