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We study classical radiation fields at next-to-leading order using the methods of scattering amplitudes.
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M. Srednicki, Quantum field theory · 2007
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C.-H. Shen, Gravitational Radiation from Color-Kinematics Duality , JHEP 11
2018
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W. D. Goldberger and A. K. Ridgway, Bound states and the classical double copy , Phys. Rev. D 97
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2008
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M. Levi and F. Teng, NLO gravitational quartic-in-spin interaction , JHEP 01
2008
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2009
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D. Bonocore, Asymptotic dynamics on the worldline for spinning particles , JHEP 02
2009
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C. Cheung and D. O’Connell, Amplitudes and Spinor-Helicity in Six Dimensions , JHEP 07
2009
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2018
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R. Aoude and A. Ochirov, Classical observables from coherent-spin amplitudes , JHEP 10
2021
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C. Heissenberg, Infrared divergences and the eikonal exponentiation , Phys. Rev. D 104
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G. Menezes and M. Sergola, NLO deflections for spinning particles and Kerr black holes , JHEP 10
2022
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R. Aoude, K. Haddad and A. Helset, Searching for Kerr in the 2PM amplitude , JHEP 07
2022
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A. Herderschee, R. Roiban and F. Teng, The sub-leading scattering waveform from amplitudes , To appear (2023)
2023
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A. Brandhuber, G. Brown, G. Chen, S. De Angelis, J. K. Gowdy and G. Travaglini, One-loop gravitational bremsstrahlung and waveforms from a heavy-mass effective field theory , To appear (2023)
2023
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A. Georgoudis, C. Heissenberg and I. Vazquez-Holm, One-loop five-point amplitude for classical scattering , To appear (2023)
2023
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