Stellar triples on the edge; Comprehensive overview of the evolution of destabilised triples leading to stellar and binary exotica
arXiv:2108.04272 · doi:10.1051/0004-6361/202141991
Abstract
Hierarchical triple stars are ideal laboratories for studying the interplay between orbital dynamics and stellar evolution. Both stellar wind mass loss and three-body dynamics cooperate to destabilise triples, which can lead to a variety of astrophysical exotica. So far our understanding of their evolution was mainly built upon results from extensive binary-single scattering experiments. Starting from generic initial conditions, we evolve an extensive set of hierarchical triples using a combination of the triple evolution code TRES and an N-body code. We find that the majority of triples preserve their hierarchy throughout their evolution, which is in contradiction with the commonly adopted picture that unstable triples always experience a chaotic, democratic resonant interaction. The duration of the unstable phase is much longer than expected, so that stellar evolution cannot be neglected. Typically an unstable triple dissolve into a single star and a binary; sometimes democratically (the initial hierarchy is lost and the lightest body usually escapes), but also in a hierarchical way (the tertiary is ejected in a slingshot, independent of its mass). Collisions are common, and mostly involve the two original inner binary components still on the main-sequence. This contradicts the idea that collisions with a giant during democratic encounters dominate. Together with collisions in stable triples, we find that triple evolution is the dominant mechanism for stellar collisions in the Milky Way. Furthermore, our simulations produce runaway and walk-away stars with speeds up to several tens km/s, with a maximum of a few 100km/s. We suggest that destabilised triples can alleviate the tension behind the origin of the observed run-away stars. Lastly, we present a promising indicator to make general predictions for the fate of a specific triple, based on the initial inclination of the system.
25 pages, 15 figures, 3 tables, accepted by A&A. Reproduction package at DOI: 10.5281/zenodo.6319686
References in corpus (39)
- Binary interaction dominates the evolution of massive stars
- Lidov-Kozai Cycles with Gravitational Radiation: Merging Black Holes in Isolated Triple Systems
- Mergers and Obliquities in Stellar Triples
- Suppression of extreme orbital evolution in triple systems with short range forces
- The observed velocity distribution of young pulsars
- Getting Its Kicks: A VLBA Parallax for the Hyperfast Pulsar B1508+55
- Chaos in the Test Particle Eccentric Kozai-Lidov Mechanism
- The triple evolution dynamical instability: Stellar collisions in the field and the formation of exotic binaries
- Deformation and tidal evolution of close-in planets and satellites using a Maxwell viscoelastic rheology
- Orbital eccentricities of binary systems with a former AGB star
- The Fate of Binaries in the Galactic Center: The Mundane and the Exotic
- Evolutionary Models for the Remnant of the Merger of Two Carbon-Oxygen Core White Dwarfs
- Violent Stellar Merger Model for Transient Events
- Orbit alignment in triple stars
- The rate of WD-WD head-on collisions may be as high as the SNe Ia rate
- Secular dynamics in hierarchical three-body systems with mass loss and mass transfer
- Collisions and close encounters involving massive main-sequence stars
- Hierarchical black hole triples in young star clusters: impact of Kozai-Lidov resonance on mergers
- High rate of gravitational waves mergers from flyby perturbations of wide black-hole triples in the field
- Evolution of stellar collision products in open clusters. II. A grid of low-mass collisions
- Stability criteria for hierarchical triple systems
- Simulating the formation of Carinae's surrounding nebula through unstable triple evolution and stellar merger-induced eruption
- Formation and merging of Mass Gap Black Holes in Gravitational Wave Merger Events from Wide Hierarchical Quadruple Systems
- Evolutionary models for R Coronae Borealis stars
- Gargantuan chaotic gravitational three-body systems and their irreversibility to the Planck length
- On the stability and collisions in triple stellar systems
- The formation of higher-order hierarchical systems in star clusters
- Correlation of macroscopic instability and Lyapunov times in the general three-body problem
- The Stationary Points of the Hierarchical Three Body Problem
- Demographics of triple systems in dense star clusters
- A Triple Origin for Twin Blue Stragglers in Close Binaries
- Unseen companions of V Hya inferred from periodic ejections
- The relativistic Pythagorean three-body problem
- Clearing the Dust from Globular Clusters
- White dwarf - main sequence star collisions from wide triples in the field
- The energy source of intermediate luminosity optical transients
- High Velocity Runaway Binaries from Supernovae in Triple Systems
- The luminous red nova AT 2018bwo in NGC 45 and its binary yellow supergiant progenitor
- V838 Monocerotis as seen by ALMA: a remnant of a binary merger in a triple system
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- Stellar Escape from Globular Clusters. I. Escape Mechanisms and Properties at Ejection
- The Lunar Gravitational-wave Antenna: Mission Studies and Science Case
- Evolution of massive stellar triples and implications for compact object binary formation
- Testing White Dwarf Age Estimates using Wide Double White Dwarf Binaries from Gaia EDR3
- A statistical view on stable and unstable Roche lobe overflow of a tertiary star onto the inner binary in triple systems
- Features of Gaia DR3 Spectroscopic Binaries I. Tidal circularization of Main-Sequence Stars
- Newly identified compact hierarchical triple system candidates using Gaia DR3
- Binary black hole mergers from merged stars in the Galactic field
- Probable Dormant Neutron Star in a Short-Period Binary System
- 10,000 Resolved Triples from Gaia: Empirical Constraints on Triple Star Populations
- A spectroscopic multiplicity survey of Galactic Wolf-Rayet stars. III. The northern late-type nitrogen-rich sample
- Extreme eccentricities of triple systems: Analytic results
- Von Zeipel - Lidov - Kozai cycles in action: triples with eclipse depth variations: KICs 6964043, 5653126, 5731312 and 8023317
- Forming Hot Subluminous Stars from Hierarchical Triples -- I. The Role of an Outer Tertiary on Formation Channels
- A Triple Star Origin For T Pyx and Other Short-Period Recurrent Novae
- A Triple Scenario for the Formation of Wide Black Hole Binaries Such As Gaia BH1
- Stragglers of the thick disc
- Then and now: A new look at the eclipse timing variations of hierarchical triple star candidates in the primordial -field, revisited by TESS
- Predicting the Stability of Hierarchical Triple Systems with Convolutional Neural Networks
- High-speed stars. II. An unbound star, young stars, bulge metal-poor stars, and Aurora candidates
- Dynamical disruption timescales and chaotic behavior of hierarchical triple systems
- Analytic Modelling of Binary-Single Encounters: Non-Thermal Eccentricity Distribution and Gravitational-Wave Source Formation
- Cataclysmic Variables in Triples: Formation Models and New Discoveries
- The Blue Lurker WOCS 14020: A Long-Period Post-Common-Envelope Binary in M67 Originating from a Merger in a Triple System
- Prompt stellar and binary black hole mergers in tight triples: Insights from chemically homogeneous evolution
- An interferometric study of B star multiplicity
- Reversible time-step adaptation for the integration of few-body systems
- Dynamics of the clumps partially disrupted from a planet around a neutron star
- A direct N-body integrator for modelling the chaotic, tidal dynamics of multi-body extrasolar systems: TIDYMESS
- Precision timing of eclipsing binaries from TESS full frame images. Method and performance
- Statistics of Magrathea exoplanets beyond the Main Sequence. Simulating the long-term evolution of circumbinary giant planets with TRES
- Don't believe the hype(r): The Yellow Supergiants of Westerlund 1
- Variable stars in the residual light curves of OGLE-IV eclipsing binaries towards the Galactic Bulge
- Massive stellar triples on the edge: A numerical study of the evolution and final outcomes of destabilized massive triples
- The origin of ultramassive white dwarfs: hints from Gaia EDR3
- Betelgeuse's Buddy: X-Ray Constraints on the Nature of Ori B
- Spin-orbit misalignment from triple-star common envelope evolution
- KIC 4150611: A quadruply eclipsing heptuple star system with a g-mode period-spacing pattern Eclipse modelling of the triple and spectroscopic analysis
- The Gaia RVS benchmark stars II. A sample of stars selected for their Gaia high radial velocity
- Detailed Simulations of Massive Hierarchical Triple Star Systems - Exploring the impact of the stellar physics on the evolutionary pathways of massive hierarchical triple systems
- Partial disruption of a planet around a white dwarf: the effect of perturbation from the remnant planet on the accretion
- Intermediate-Mass Mergers: A New Scenario for Several FS CMa Stars
- Repeating X-ray bursts: Interaction between a neutron star and clumps partially disrupted from a planet
- Current Unsolved Problems in Planetary Nebulae Research
- The VLT-FLAMES survey of massive stars. NGC2004#115: A triple system hosting a possible short period B+BH binary
- Mass Ratio Distribution of Hierarchical Triple Systems from the LAMOST-MRS Survey
- A systematic method to identify runaways from star clusters produced from single-binary interactions: A case study of M67
- Identifying Hierarchically Triple Star Systems with Gaia DR3 and LAMOST