Affiliation:
1. The Niels Bohr Institute
2. Asia Pacific Center for Theoretical Physics
3. Postech
Abstract
Applying the quantum field theoretic perturbiner approach to Einstein gravity, we compute the metric of a Schwarzschild black hole order by order in perturbation theory. Using recursion, this calculation can be carried out in de Donder gauge to all orders in Newton’s constant. The result is a geometric series which is convergent outside a disk of finite radius, and it agrees within its region of convergence with the known de Donder gauge metric of a Schwarzschild black hole. It thus provides a first all-order perturbative computation in Einstein gravity with a matter source, and this series converges to the known nonperturbative expression in the expected range of convergence.
Published by the American Physical Society
2024
Funder
Danmarks Frie Forskningsfond
National Research Foundation of Korea
Ministry of Science and ICT, South Korea
Science and Technology Promotion Fund
Lottery Fund of the Korean Government
Government of Gyeongsangbuk-do Province
Government of Pohang City
Asia Pacific Center for Theoretical Physics
Publisher
American Physical Society (APS)
Cited by
1 articles.
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