An asymptotic framework for gravitational scattering

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Abstract

Asymptotically flat spacetimes have been studied in five separate regions: future/past timelike infinity i ± , future/past null infinity , and spatial infinity i 0. We formulate assumptions and definitions such that the five infinities share a single Bondi-Metzner-Sachs (BMS) group of asymptotic symmetries and associated charges. We show how individual ingoing/outgoing massive bodies may be ascribed initial/final BMS charges and derive global conservation laws stating that the change in total charge is balanced by the corresponding radiative flux. This framework provides a foundation for the study of asymptotically flat spacetimes containing ingoing and outgoing massive bodies, i.e. for generalized gravitational scattering. Among the new implications are rigorous definitions for quantities like initial/final spin, scattering angle, and impact parameter in multi-body spacetimes, without the use of any preferred background structure.

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Compère, G., Gralla, S. E., & Wei, H. (2023). An asymptotic framework for gravitational scattering. Classical and Quantum Gravity, 40(20). https://doi.org/10.1088/1361-6382/acf5c1

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