论文标题
通过动态的洛伦兹对称性破裂在四高摩纳拉群岛模型中核对LSND和SUPER-KAMIOKANDE数据
Reconciling LSND and super-Kamiokande data through the dynamical Lorentz symmetry breaking in a four-Majorana fermion model
论文作者
论文摘要
我们提出了一个具有四重奏自我耦合的Majorana Fermions模型。这些Majorana fermions通过II型SEESAW机制获得质量,其中将物理本征态被鉴定为轻便的Majorana fermion和另一个重量的Majorana Fermion。在物理的基础上,四分之一的自耦合涉及这些major虫的轴向电流,以及光粒子与重粒子的轴向电流的相互作用。我们在此模型中介绍了两个辅助量规场,并研究了该模型的相应有效潜力的稳定性条件。有效电位的基态引入了两个4个向量作为真空期望值的尺度,因此,模型中的动力学洛伦兹对称性破裂(DLSB)出现。我们使用有效措施的扩展来计算有效的拉格朗日在辅助场中的二阶,以作为基态周围的波动。该机制通过辐射校正为辅助量规场,混合质量项,纵向传播和Chern-Simons术语产生动力学。对角度化后,两个轨距场通过类似的II型SeeSAW机制获得质量,其中仪表玻色子具有轻质的质量,另一个具有重量的质量。在洛伦兹对称性破坏的情况下,我们获得了Majorana fermions和Gauge Boson场的通讯分散关系。在后面,我们在过渡$ν_{e} \rightarrowν_μ$中分析了中微子的振荡。我们讨论了此过渡的参数空间,并表明DLSB可以调解LSND和Super-Kamiokande结果。
We propose a model of Majorana fermions with quartic self-couplings. These Majorana fermions acquire masses via a type II seesaw mechanism in which the physical eigenstates are identified as a light Majorana fermion and another heavy Majorana fermion. On a physical basis, the quartic self-couplings involve axial currents of these Majorana fermions, and also the interaction of the axial current for the light particle with the heavy particle one. We introduce two auxiliaries gauge fields in this model, and we study the stability conditions of the correspondent effective potential of the model. The ground state of the effective potential introduces two 4-vectors as scales of vacuum expected values, and consequently, the dynamical Lorentz symmetry breaking (DLSB) emerges in the model. We use the expansion of the effective action to calculate the effective Lagrangian up to second order in the auxiliary fields as fluctuations around the ground state. This mechanism generates dynamics for the auxiliary gauge fields, mixed mass terms, longitudinal propagation, and Chern-Simons term through radiative corrections. After the diagonalization, the two gauge fields gain masses through an analogous type II seesaw mechanism in which a gauge boson has a light mass, and the other one acquires a heavy mass. In this scenario of Lorentz symmetry breaking, we obtain the correspondent dispersion relations for the Majorana fermions and the gauge boson fields. Posteriorly, we analyze the neutrino's oscillations in the presence of a DLSB parameter, in the transition $ν_{e} \rightarrow ν_μ$. We discuss the parameter space of this transition and show that the DLSB can conciliate the LSND and super-Kamiokande results.