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Spin-2 Twisted Duality in (A)dS

机译:(A)dS中的Spin-2扭曲对偶

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Starting from the dual Lagrangians recently obtained for (partially) massless spin-2 fields in the Stueckelberg formulation, we write the equations of motion for (partially) massless gravitons in (A)dS in the form of twisted-duality relations. In both cases, the latter admit a smooth flat limit. In the massless case, this limit reproduces the gravitational twisted-duality relations previously known for Minkowski spacetime. In the partially-massless case, our twisted-duality relations preserve the number of degrees of freedom in the flat limit, in the sense that they split into a decoupled pair of dualities for spin-1 and spin-2 fields. Our results apply to spacetimes of any dimension greater than three. In four dimensions, the twisted-duality relations for partially massless fields that appeared in the literature are recovered by gauging away the Stueckelberg field.
机译:从最近为Stueckelberg公式中的(部分)无质量的spin-2场获得的对偶拉格朗日算子开始,我们以扭曲对偶关系的形式写出(A)dS中(部分)无质量的引力子的运动方程。在这两种情况下,后者都接受平滑的平坦极限。在无质量情况下,该极限再现了以前以Minkowski时空已知的引力扭曲对偶关系。在部分无质量的情况下,我们的扭曲对偶关系将自由度的数量保持在平坦范围内,就它们在旋转1和旋转2场中分裂为一对解耦的对偶而言。我们的结果适用于任何大于3维的时空。在四个方面,文献中出现的部分无质量场的扭曲对偶关系可通过测量斯图尔克伯格场来恢复。

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