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Published October 15, 2017 | Submitted + Published
Journal Article Open

Radiation reaction for spinning bodies in effective field theory. II. Spin-spin effects

Abstract

We compute the leading post-Newtonian (PN) contributions at quadratic order in the spins to the radiation-reaction acceleration and spin evolution for binary systems, entering at four-and-a-half PN order. Our calculation includes the backreaction from finite-size spin effects, which is presented for the first time. The computation is carried out, from first principles, using the effective field theory framework for spinning extended objects. At this order, nonconservative effects in the spin-spin sector are independent of the spin supplementary conditions. A nontrivial consistency check is performed by showing that the energy loss induced by the resulting radiation-reaction force is equivalent to the total emitted power in the far zone. We find that, in contrast to the spin-orbit contributions (reported in a companion paper), the radiation reaction affects the evolution of the spin vectors once spin-spin effects are incorporated.

Additional Information

© 2017 American Physical Society. Received 31 May 2017; published 30 October 2017. N. T. M. is supported by the Brazilian Ministry of Education (CAPES Foundation). C. R. G. is supported by NSF Grant No. PHY-1404569 to Caltech. A. K. L. is supported by NSF Grant No. PHY-1519175. R. A. P. is supported by the Simons Foundation and São Paulo Research Foundation (FAPESP) Young Investigator Awards, Grants No. 2014/25212-3 and No. 2014/10748-5. R. A. P. also thanks the theory group at DESY (Hamburg) for hospitality while this work was being completed. Part of this research was performed at the Jet Propulsion Laboratory, California Institute of Technology, under a contract with the National Aeronautics and Space Administration.

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Published - PhysRevD.96.084065.pdf

Submitted - 1705.07938.pdf

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August 19, 2023
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