Metric Source Completions and Integrability in Celestial Gravity
Yingnan Xu, Shuangshuang Chu
Abstract
We evaluate local metric-source responses of celestial Einstein scattering in Weyl--Beltrami variables. Compact physical graviton packets retain the momentum-conservation distribution and its normal derivatives. For disjoint smooth Beltrami profiles, the complete reference same-chirality Ward response agrees with the differentiated quasiconformal source functional through quadratic order. Subtracting the symmetrized product response isolates a nonzero nonlinear coordinate contribution, detected by a linear normal packet independently of the quadratic normal coefficient. An analytic normal-profile subclass supports angular continuation on compact unpinched regions and permits evaluation of the MHV energy corner and relative Banerjee--Pasterski endpoint residue. For opposite helicities, consecutive soft theorems determine the energy and spin contributions to the full momentum distribution. A real Kawai--Lewellen--Tye channel gives its nonzero normal coefficient and the mixed Mellin divisor of a gravitational contact. We formulate the additional global Ward, contact and continuation conditions for a mixed metric Hessian. Reference scattering data, source transport and vacuum completion enter separately in this construction. In the scalar sector, an area-normalized relative determinant fixes the anomaly functional, and fixed-area harmonic combinations extract its Euler coefficient from local curvature terms of bounded derivative order. These calculations provide physical response data and local continuation domains for integrable celestial metric-source completions.
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