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Nonperturbative Continuity in Graviton Mass versus Perturbative Discontinuity

机译:引力质量的非摄动连续性与摄动不连续性

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摘要

We address the question whether a graviton could have a small nonzero mass. The issue is subtle for two reasons: there is a discontinuity in the mass in the lowest tree-level approximation, and, moreover, the nonlinear four-dimensional theory of a massive graviton is not defined unambiguously. First, we reiterate the old argument that for the vanishing graviton mass the lowest tree-level approximation breaks down since the higher order corrections are singular in the graviton mass. However, there exist nonperturbative solutions which correspond to the summation of the singular terms and these solutions are continuous in the graviton mass. Furthermore, we propose a nonlinear completion of the four-dimensional theory of massive gravity by embedding it into a five-dimensional generally covariant nonlinear model. We show that the exact solutions of the model are continuous in the mass, yet the perturbative expansion has the discontinuity in the leading order and the singularities in higher orders as in the four-dimensional case. The helicity-zero graviton state which is responsible for the perturbative discontinuity and singularities decouples from the matter in the limit of vanishing graviton mass in the full classical theory. Thus, we conclude that a small graviton mass is not in contradiction with observations.
机译:我们解决了引力子是否可以具有小的非零质量的问题。这个问题之所以很细微,有两个原因:在最低的树级逼近中,质量不连续;此外,没有对大型引力子的非线性四维理论进行明确定义。首先,我们重申一个古老的论点,即对于消失的引力子质量,最低的树级近似会分解,因为引力子质量中的高阶校正是奇异的。但是,存在与奇异项之和相对应的非摄动解,并且这些解在引力质量中是连续的。此外,我们通过将其嵌入到五维一般协变量非线性模型中,提出了重力四维理论的非线性完成。我们证明了该模型的精确解在质量上是连续的,但扰动展开在四阶情况下在前导阶中具有不连续性,而在高阶具有奇异性。在完全经典理论中,导致摄动不连续和奇点的零螺旋重力态与物质解耦。因此,我们得出的结论是,较小的引力子质量与观测值并不矛盾。

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