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Gauge interaction as periodicity modulation

机译:量具相互作用作为周期性调制

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The paper is devoted to a geometrical interpretation of gauge invariance in terms of the formalism of field theory in compact space-time dimensions (Dolce, 2011). [8]. In this formalism, the kinematic information of an interacting elementary particle is encoded on the relativistic geometrodynamics of the boundary of the theory through local transformations of the underlying space-time coordinates. Therefore gauge interactions are described as invariance of the theory under local deformations of the boundary. The resulting local variations of the field solution are interpreted as internal transformations. The internal symmetries of the gauge theory turn out to be related to corresponding space-time local symmetries. In the approximation of local infinitesimal isometric transformations, Maxwell's kinematics and gauge invariance are inferred directly from the variational principle. Furthermore we explicitly impose periodic conditions at the boundary of the theory as semi-classical quantization condition in order to investigate the quantum behavior of gauge interaction. In the abelian case the result is a remarkable formal correspondence with scalar QED.
机译:本文致力于在紧凑的时空尺度上用场论的形式主义对规范不变性的几何解释(Dolce,2011)。 [8]。在这种形式主义中,相互作用的基本粒子的运动学信息是通过基础时空坐标的局部转换,在理论边界的相对论性地球动力学上编码的。因此,规范的相互作用被描述为在边界局部变形下理论的不变性。现场解决方案的结果局部变化被解释为内部变换。规范理论的内部对称性与相应的时空局部对称性有关。在近似局部无限等距变换时,直接从变分原理中推断出麦克斯韦的运动学和尺度不变性。此外,为了研究量规相互作用的量子行为,我们在理论的边界上明确地将周期性条件强加为半经典量化条件。在阿贝尔语的情况下,结果是与标量QED的显着形式对应。

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