论文标题
轴和阿尔卑斯山的低能量有效理论
The Low-Energy Effective Theory of Axions and ALPs
论文作者
论文摘要
轴和轴状颗粒(ALP)是标准模型的高能扩展的能力良好的低能遗物,它们通过新物理部门的质量尺度$λ$抑制的高维操作员与已知颗粒相互作用。从最通用的尺寸-5相互作用开始,我们详细讨论了ALP耦合从新物理量表到Electroweak对称性破坏量表的能量的演变。我们以量规耦合的双环顺序得出相关的异常尺寸,并在Yukawa相互作用中得出一环阶,仔细考虑了涉及HIGGS电流ALP耦合的冗余操作员的处理。我们在弱规模上考虑了一环(部分两环)的匹配贡献,包括特别改变风味的效果。详细讨论了有效的拉格朗日不同等效形式之间的关系。我们还构建了有效的手性拉格朗日语,以与光子和光伪符号介子相互作用的ALP,指出与QCD轴相应的Lagrangian的重要差异。
Axions and axion-like particles (ALPs) are well-motivated low-energy relics of high-energy extensions of the Standard Model, which interact with the known particles through higher-dimensional operators suppressed by the mass scale $Λ$ of the new-physics sector. Starting from the most general dimension-5 interactions, we discuss in detail the evolution of the ALP couplings from the new-physics scale to energies at and below the scale of electroweak symmetry breaking. We derive the relevant anomalous dimensions at two-loop order in gauge couplings and one-loop order in Yukawa interactions, carefully considering the treatment of a redundant operator involving an ALP coupling to the Higgs current. We account for one-loop (and partially two-loop) matching contributions at the weak scale, including in particular flavor-changing effects. The relations between different equivalent forms of the effective Lagrangian are discussed in detail. We also construct the effective chiral Lagrangian for an ALP interacting with photons and light pseudoscalar mesons, pointing out important differences with the corresponding Lagrangian for the QCD axion.