Analytic computation of the secular effects of encounters on a binary: features arising from second-order perturbation theory
arXiv:1904.09624 · doi:10.1093/mnras/stz1646
Abstract
Binary-single interactions play a crucial role in the evolution of dense stellar systems such as globular clusters. In addition, they are believed to drive black hole (BH) binary mergers in these systems. A subset of binary-single interactions are secular encounters, for which the third body approaches the binary on a relatively wide orbit, and such that it is justified to average the equations of motion over the binary's orbital phase. Previous works used first-order perturbation theory to compute the effects of such secular encounters on the binary. However, this approach can break down for highly eccentric binaries, which are important for BH binary mergers and gravitational wave sources. Here, we present an analytic computation using second-order perturbation techniques, valid to the quadrupole-order approximation. In our calculation, we take into account the instantaneous back-reaction of the binary to the third body, and compute corrections to previous first-order results. Using singly-averaged and direct 3-body integrations, we demonstrate the validity of our expressions. In particular, we show that the eccentricity change for highly eccentric binaries can reach a plateau, associated with a large inclination change, and can even reverse sign. These effects are not captured by previous first-order results. We provide a simple script to conveniently evaluate our analytic expressions, including routines for numerical integration and verification.
Accepted for publication in MNRAS. One reference updated. 18 pages, 7 figures. Code can be found at https://github.com/hamers/flybys
References in corpus (10)
- Suppression of extreme orbital evolution in triple systems with short range forces
- Dynamics of Planetary Systems in Star Clusters
- Chaos in the Test Particle Eccentric Kozai-Lidov Mechanism
- Hydrogen delivery onto white dwarfs from remnant exo-Oort cloud comets
- The rate of WD-WD head-on collisions may be as high as the SNe Ia rate
- Secular chaotic dynamics in hierarchical quadruple systems, with applications to hot Jupiters in stellar binaries and triples
- In Search of the Thermal Eccentricity Distribution
- Chaotic quadruple secular evolution and the production of misaligned exomoons and Warm Jupiters in stellar multiples
- Relativistic dynamics of stars near a supermassive black hole
- The statistical mechanics of relativistic orbits around a massive black hole
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