paper

Threshold Resolvent Singularities and the Infrared Structure of Linearized Gravity

arXiv:2511.05345

Abstract

We identify a sharp geometric threshold governing the infrared spectral behavior of the spatial Lichnerowicz operator on asymptotically flat three-dimensional manifolds. Let be asymptotically flat and let denote the spatial Lichnerowicz operator acting on symmetric -tensors. Assume \[ |{\rm Riem}(x)| \lesssim r(x)^{-p} \quad \text{as } r(x)\to\infty. \] If , curvature is spectrally short-range: exhibits regular low-energy scattering and zero energy is not singular. At the critical decay \[ |{\rm Riem}(x)| \sim r^{-3}, \] dispersion and curvature balance. Zero enters the essential spectrum, and the weighted resolvent develops a threshold singularity. For , \[ \|\langle r\rangle^{-s}(L-i\varepsilon)^{-1}\langle r\rangle^{-s}\| \gtrsim \varepsilon^{-(1-s)} \quad \text{as } \varepsilon \downarrow 0 . \] Thus, the limiting absorption principle fails at zero energy. This singularity provides a spatial spectral mechanism for the infrared sector of linearized gravity. The same inverse-cube scaling governs long-range correlations, irregular low-frequency scattering, and soft gravitational modes. Numerical simulations of a radial model and the full tensor operator confirm that marks a sharp transition between negligible and marginal curvature. The associated branch point at zero energy determines late-time relaxation, yielding the universal tail exponent \[ t^{-(2\ell+3)}, \] a spectral consequence of nonzero ADM mass. More generally, in spatial dimensions, the critical decay \[ |{\rm Riem}(x)| \sim r^{-d} \] forms a universal boundary for curvature-coupled Laplace-type operators, encoding the infrared structure of gravity in the spectral geometry of a Cauchy slice.

Withdrawn by the author after the discovery of substantive errors that invalidate the central results. The Weyl-sequence and weighted-resolvent argument does not distinguish the proposed inverse-cube curvature regime from the free operator, and the dimensional-scaling argument does not establish the claimed critical exponent

Threshold Resolvent Singularities and the Infrared Structure of Linearized Gravity · wovepaper