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Scale-invariant gauge theories of gravity: Theoretical foundations

机译:重力的尺度不变量规理论:理论基础

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We consider the construction of gauge theories of gravity, focussing in particular on the extension of local Poincare invariance to include invariance under local changes of scale. We work exclusively in terms of finite transformations, which allow for a more transparent interpretation of such theories in terms of gauge fields in Minkowski spacetime. Our approach therefore differs from the usual geometrical description of locally scale-invariant Poincare gauge theory (PGT) and Weyl gauge theory (WGT) in terms of Riemann-Cartan and Weyl-Cartan spacetimes, respectively. In particular, we reconsider the interpretation of the Einstein gauge and also the equations of motion of matter fields and test particles in these theories. Inspired by the observation that the PGT and WGT matter actions for the Dirac field and electromagnetic field have more general invariance properties than those imposed by construction, we go on to present a novel alternative to WGT by considering an "extended" form for the transformation law of the rotational gauge field under local dilations, which includes its "normal" transformation law in WGT as a special case. The resulting "extended" Weyl gauge theory (eWGT) has a number of interesting features that we describe in detail. In particular, we present a new scale-invariant gauge theory of gravity that accommodates ordinary matter and is defined by the most general parity-invariant eWGT Lagrangian that is at most quadratic in the eWGT field strengths, and we derive its field equations. We also consider the construction of PGTs that are invariant under local dilations assuming either the "normal" or "extended" transformation law for the rotational gauge field, but show that they are special cases of WGT and eWGT, respectively. Published by AIP Publishing.
机译:我们考虑构造引力规范理论,特别关注局部庞加莱不变性的扩展,以包括局部尺度变化下的不变性。我们仅在有限变换方面进行工作,这使得可以根据Minkowski时空中的标距对这种理论进行更透明的解释。因此,我们的方法与局部尺度不变的庞加莱规范理论(PGT)和Weyl规范理论(WGT)的通常几何描述分别在黎曼-卡丹(Riemann-Cartan)和魏尔-卡丹(Weyl-Cartan)时空方面有所不同。特别是,我们在这些理论中重新考虑了爱因斯坦规范的解释以及物质场和测试粒子的运动方程。受到观察的启发,迪拉克场和电磁场的PGT和WGT物质作用比构造所施加的作用具有更广泛的不变性,我们通过考虑变换法的“扩展”形式,继续提出一种替代WGT的新颖方法局部膨胀下旋转量规场的变化,在特殊情况下包括其在WGT中的“正常”变换定律。由此产生的“扩展的” Weyl量规理论(eWGT)具有许多有趣的功能,我们将对其进行详细描述。特别是,我们提出了一种新的尺度不变规范的引力理论,该理论适用于普通物质,并且由eWGT场强最多为二次的最通用的奇偶不变eWGT拉格朗日定义,我们得出了它的场方程。我们还考虑了在局部膨胀条件下不变的PGT的构造,假设旋转量规场的“正常”或“扩展”变换定律,但表明它们分别是WGT和eWGT的特例。由AIP Publishing发布。

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