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

机译:共形偶合理论和韦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 space-time, while localized soliton solutions correspond to magnetic monopoles in asymptotically anti-de-Sitter space-time. The resulting effective action gives rise to Einstein gravity and the residual U(1) gauge theory. This mechanism allows for the possibility of considering, more seriously, 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地反de-Sitter时空的磁单极子。产生的有效作用引起爱因斯坦引力和残余U(1)规范理论。这种机制使人们有可能更认真地考虑共形不变物质重力理论,该理论已经显示出有关银河旋转曲线中物质缺失问题的有希望的迹象。

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