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Spontaneous breaking of conformal invariance in theories of conformally coupled matter and Weyl gravity

机译:共形偶合理论和魏尔引力理论中的共形不变性的自发突破

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摘要

We study the theory of Weyl conformal gravity with matter degrees of freedom in a conformally invariant interaction. Specifically, we consider a triplet of scalar fields and SO(3) non-Abelian gauge fields, i.e. the Georgi-Glashow model conformally coupled to Weyl gravity. We show that the equations of motion admit solutions spontaneously breaking the conformal symmetry and the gauge symmetry, providing a mechanism for supplying a scale in the theory. The vacuum solution corresponds to anti-de Sitter spacetime, while localized soliton solutions correspond to magnetic monopoles in asymptotically anti-de Sitter spacetime. This mechanism strengthens the reasons for considering conformally invariant matter-gravity theory, which has shown promising indications concerning the problem of missing matter in galactic rotation curves.
机译:我们研究了在共形不变的相互作用中具有物质自由度的Weyl共形引力理论。具体来说,我们考虑标量场和SO(3)非阿贝尔规范场的三元组,即与Weyl重力共形耦合的Georgi-Glashow模型。我们表明,运动方程允许解自发地打破共形对称性和规范对称性,从而为理论中的标度提供了一种机制。真空解对应于反de Sitter时空,而局部孤子解对应于渐近反de Sitter时空的磁单极子。这种机制加强了考虑共形不变物质重力理论的原因,该理论为银河旋转曲线中的物质缺失问题提供了有希望的指示。

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