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The Cosmological Constant: 2nd Order Quantum-Mechanical Correction to the Newton Gravity

机译:宇宙常数:牛顿引力的二阶量子力学校正

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The work shows that the associated Einstein-like gravity for the Klein-Gordon field shows the spontaneous emergence of the “cosmological” pressure tensor density (CPTD) that in the classical limit leads to the cosmological constant (CC). Even if the classical cosmological constant is set to zero, the model shows, that exists a residual theory-derived quantum CPTD. The work shows that the cosmological constant can be considered as a second order quantum-mechanical correction to the Newtonian gravity. The outputs of the theory show that the expectation value of the CPTD is independent by the zero-point vacuum energy density and that it takes contribution only from the space where the mass is localized (and the space-time is curvilinear) while tending to zero as the space-time approaches to the flat vacuum. A developed model of scalar matter universe shows an overall cosmological effect of the CPTD on the motion of the galaxies that agrees with the astronomical observations.
机译:这项工作表明,Klein-Gordon场相关的类似爱因斯坦的引力显示出“宇宙学”的压力张量密度(CPTD)的自发出现,在经典的极限条件下导致了宇宙常数(CC)。该模型显示,即使经典宇宙学常数设置为零,也存在一个残留理论衍生的量子CPTD。这项工作表明宇宙常数可以看作是对牛顿引力的二阶量子力学校正。该理论的输出表明,CPTD的期望值与零点真空能量密度无关,并且其仅在质量位于局部的空间(且时空为曲线)中贡献,而趋于零随着时空接近平坦的真空。一个已开发的标量物质宇宙模型显示了CPTD对星系运动的整体宇宙学影响,这与天文观测相符。

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