论文标题
明确的软超对称性破裂在异性M理论$ b-l $ MSSM中
Explicit Soft Supersymmetry Breaking in the Heterotic M-Theory $B-L$ MSSM
论文作者
论文摘要
审查了$ B-L $ MSSM理论的可观察和隐藏领域的强烈耦合的异质M理论真空,包括讨论“捆绑”限制的讨论,即可观察到的$ su(4)$ vector Bundle和从线条捆绑包中诱导的隐藏部门束。然后在这种情况下引入仪表式凝结,并提出了表现出Gaugino凝结的隐藏区域。计算冷凝量表,挑出一个线条束,其相关的冷凝量表足够低,可以与LHC上可用的能量尺度兼容。提出了满足所有捆绑约束的KählerOduli空间的相应区域。由于该领域中的$ n = 1 $ supersymmememmemmeTry而引起的模量依赖性$ f $ terms的通用形式 - 呈现,然后明确给予与低凝结量表相关的唯一线条束。计算每个Gaugino和标量柔软的超对称性术语的模量依赖性系数均计算,从而导致可观察到的扇区物质字段的低能量有效的Lagrangian。然后,我们表明,在Kähler模量空间中的大量点上,满足所有“捆绑”约束,这些系数是重新归一化组方程的初始条件,在低能量下,这会导致完全逼真的物理学满足所有现象学约束。最后,我们表明,大量这些初始点也满足了由二次Higgs-higgs共轭软性超对称性破坏项产生的最终约束。
The strongly coupled heterotic M-theory vacuum for both the observable and hidden sectors of the $B-L$ MSSM theory is reviewed, including a discussion of the "bundle" constraints that both the observable sector $SU(4)$ vector bundle and the a hidden sector bundle induced from a line bundle must satisfy. Gaugino condensation is then introduced within this context, and the hidden sector bundles that exhibit gaugino condensation are presented. The condensation scale is computed, singling out one line bundle whose associated condensation scale is low enough to be compatible with the energy scales available at the LHC. The corresponding region of Kähler moduli space where all bundle constraints are satisfied is presented. The generic form of the moduli dependent $F$-terms due to a gaugino superpotential - which spontaneously break $N=1$ supersymmetry in this sector - is presented and then given explicitly for the unique line bundle associated with the low condensation scale. The moduli dependent coefficients for each of the gaugino and scalar field soft supersymmetry breaking terms are computed leading to a low-energy effective Lagrangian for the observable sector matter fields. We then show that at a large number of points in Kähler moduli space that satisfy all "bundle" constraints, these coefficients are initial conditions for the renormalization group equations which, at low energy, lead to completely realistic physics satisfying all phenomenological constraints. Finally, we show that a substantial number of these initial points also satisfy a final constraint arising from the quadratic Higgs-Higgs conjugate soft supersymmetry breaking term.