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Quantum field theory of gravity with spin and scaling gauge invariance and spacetime dynamics with quantum inflation

机译:旋转和缩放量规的量子场的重心与量子通胀的旋转尺度不变性和时空动态

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Treating the gravitational force on the same footing as the electroweak and strong forces, we present a quantum field theory of gravity based on spin and scaling gauge symmetries. A biframe spacetime is initiated to describe such a quantum gravity theory. The gravifield sided on both locally flat noncoordinate spacetime and globally flat Minkowski spacetime is an essential ingredient for gauging global spin and scaling symmetries. The locally flat gravifield spacetime spanned by the gravifield is associated with a noncommutative geometry characterized by a gauge-type field strength of the gravifield. A coordinate-independent and gauge-invariant action for the quantum gravity is built in the gravifield basis. In the coordinate basis, we derive equations of motion for all quantum fields including the gravitational effect and obtain basic conservation laws for all symmetries. The equation of motion for the gravifield tensor is deduced in connection directly with the total energy-momentum tensor. When the spin and scaling gauge symmetries are broken down to a background structure that possesses the global Lorentz and scaling symmetries, we obtain exact solutions by solving equations of motion for the background fields in a unitary basis. The massless graviton and massive spinon result as physical quantum degrees of freedom. The resulting Lorentz-invariant and conformally flat background gravifield spacetime is characterized by a cosmic vector with a nonzero cosmological mass scale. The evolving Universe is, in general, not isotropic in terms of conformal proper time. The conformal size of the Universe becomes singular at the cosmological horizon and turns out to be inflationary in light of cosmic proper time. A mechanism for quantum scalinon inflation is demonstrated such that it is the quantum effect that causes the breaking of global scaling symmetry and generates the inflation of the early Universe, which is ended when the evolving vacuum expectation value of the scalar potential gets a minimal. Regarding the gravifield as a Goldstone-like field that transmutes the local spin gauge symmetry into the global Lorentz symmetry with a hidden general coordinate invariance, a spacetime gauge field is constructed from the spin gauge field that becomes a hidden gauge field. The bosonic gravitational interactions are described by the Goldstone-like gravimetric field and spacetime gauge field. Two types of gravity equation resu one is as the extension to Einstein's equation of general relativity, and the other is a new one that characterizes spinon dynamics. The Einstein theory of general relativity is considered to be an effective low-energy theory.
机译:在与电挖掘和强力相同的基础上处理引力力,我们基于旋转和缩放量计对称提出了一种量子场的重力理论。启动双歧糖次间隔以描述这种量子重力理论。在局部平坦的非古典时期和全球平坦的Minkowski Spacetime上的Bigifield面向全球旋转和缩放对称性的基本成分。由Bigifield跨越的局部平坦的Bremifield Spacetime与由Bauge型场强的非传染性几何形状相关联。对于量子重力的坐标独立和仪表不变动作是基础的。在坐标基础上,我们推出了包括引力效应的所有量子字段的运动方程,并获得所有对称性的基本保护法。直接与总能量动量张量直接推导出Beactifield张量的运动方程。当旋转和缩放量计对称被分解为具有全局Lorentz和缩放对称的背景结构时,我们通过求解背景领域的运动方程来获得精确的解决方案。无抽疹和巨大的纺血管结果作为物理量子的自由度。由此产生的Lorentz不变量和共形平坦的背景Bremifield Spacetime的特征在于具有非零宇宙尺度的宇宙矢量。一般而言,不断发展的宇宙在保形适当的时间方面不是各向同性的。宇宙的共形大小在宇宙理论中变得单数,并鉴于宇宙适当的时间,旨在成为通胀。证明了一种用于量子型膨胀的机制,使得它是导致全局缩放对称性的破坏并产生早期宇宙的膨胀的量子效应,这在演变的标量势的真空期望值变得最小时结束。关于Bigifield作为一种金石状的领域,其通过隐藏的一般坐标不变性将局部旋转量对称转变为全局洛伦兹对称性,间隔量规构造由变为隐藏的仪表场的旋转量磁场。硼化石重力相互作用由Goldstone的重量磁场和空间计域描述。两种类型的重力方程式结果;一个是Einstein概述一般相对性方程的延伸,另一个是一种表征SpinOn动态的新一个。一般相对论的爱因斯坦理论被认为是一种有效的低能量理论。

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