论文标题

预测一阶杨米尔斯理论

Pregeometric First Order Yang-Mills Theory

论文作者

Gallagher, Priidik, Koivisto, Tomi, Marzola, Luca

论文摘要

粒子和基本相互作用的标准描述至关重要的是基于常规的度量背景。用差异几何形状的语言,通过霍奇星二重化编码该依赖性。结果,标量和阳米尔斯动作的常规形式在度量归化的前几何状态下分解。这表明使用一阶形式主义,其中指标可能从更基本的成分中出现,并且该理论可以始终如一地扩展到前几何阶段。我们系统地探索了对一阶形式主义的不同实现和解释,发现基本矢量或旋转子结构将连续磁化和极化作为整合常数。这种效果类似于在重力的最新自偶式表述中对宇宙学黑暗扇区的描述,而对第一阶阳米尔斯理论获得的相似形式提出了统一的新途径。

The standard description of particles and fundamental interactions is crucially based on a regular metric background. In the language of differential geometry, this dependence is encoded into the action via Hodge star dualization. As a result, the conventional forms of the scalar and Yang-Mills actions break down in a pregeometric regime where the metric is degenerate. This suggests the use of first order formalism, where the metric may emerge from more fundamental constituents and the theory can be consistently extended to the pregeometric phase. We systematically explore different realizations and interpretations of first order formalism, finding that a fundamental vector or spinor substructure brings about continuum magnetization and polarization as integration constants. This effect is analogous to the description of the cosmological dark sector in a recent self-dual formulation of gravity, and the similar form obtained for the first order Yang-Mills theory suggests new paths toward unification.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源