Nonconservative Lie series: post-Newtonian binary dynamics at 2.5PN
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| Format: | Preprint |
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2025
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| _version_ | 1866908708397645824 |
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| author | Aykroyd, Christopher Bourgoin, Adrien Poncin-Lafitte, Christophe Le |
| author_facet | Aykroyd, Christopher Bourgoin, Adrien Poncin-Lafitte, Christophe Le |
| contents | We present a fully analytical solution to the dynamics of the non-spinning 2.5 post-Newtonian binary problem, accounting for both the long-term (secular) and short-term (oscillatory) temporal behavior, with no restriction on eccentricity. The radiative degrees of freedom are handled within the nonconservative Hamiltonian framework introduced in a companion paper. In this work, we apply the Lie series method to construct a resonant Birkhoff normal-form and the corresponding generator of the radiation-reaction dynamics. The secular piece reconstructs exactly the Peters-Mathews relations for semi-major axis and eccentricity. The oscillatory piece completes the dynamics and is well suited for gravitational wave templates. The procedure we present in this paper can be systematically employed to cast arbitrary nonconservative systems into extended Hamiltonian form so that the Lie method can be applied. |
| format | Preprint |
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arxiv_https___arxiv_org_abs_2512_11947 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Nonconservative Lie series: post-Newtonian binary dynamics at 2.5PN Aykroyd, Christopher Bourgoin, Adrien Poncin-Lafitte, Christophe Le General Relativity and Quantum Cosmology We present a fully analytical solution to the dynamics of the non-spinning 2.5 post-Newtonian binary problem, accounting for both the long-term (secular) and short-term (oscillatory) temporal behavior, with no restriction on eccentricity. The radiative degrees of freedom are handled within the nonconservative Hamiltonian framework introduced in a companion paper. In this work, we apply the Lie series method to construct a resonant Birkhoff normal-form and the corresponding generator of the radiation-reaction dynamics. The secular piece reconstructs exactly the Peters-Mathews relations for semi-major axis and eccentricity. The oscillatory piece completes the dynamics and is well suited for gravitational wave templates. The procedure we present in this paper can be systematically employed to cast arbitrary nonconservative systems into extended Hamiltonian form so that the Lie method can be applied. |
| title | Nonconservative Lie series: post-Newtonian binary dynamics at 2.5PN |
| topic | General Relativity and Quantum Cosmology |
| url | https://arxiv.org/abs/2512.11947 |