Structure and evolution of high-mass stellar mergers
arXiv:1307.2445 · doi:10.1093/mnras/stt1268
Abstract
In young dense clusters repeated collisions between massive stars may lead to the formation of a very massive star (above 100 Msun). In the past the study of the long-term evolution of merger remnants has mostly focussed on collisions between low-mass stars (up to about 2 Msun) in the context of blue-straggler formation. The evolution of collision products of more massive stars has not been as thoroughly investigated. In this paper we study the long-term evolution of a number of stellar mergers formed by the head-on collision of a primary star with a mass of 5-40 Msun with a lower mass star at three points in its evolution in order to better understand their evolution. We use smooth particle hydrodynamics (SPH) calculations to model the collision between the stars. The outcome of this calculation is reduced to one dimension and imported into a stellar evolution code. We follow the subsequent evolution of the collision product through the main sequence at least until the onset of helium burning. We find that little hydrogen is mixed into the core of the collision products, in agreement with previous studies of collisions between low-mass stars. For collisions involving evolved stars we find that during the merger the surface nitrogen abundance can be strongly enhanced. The evolution of most of the collision products proceeds analogously to that of normal stars with the same mass, but with a larger radius and luminosity. However, the evolution of collision products that form with a hydrogen depleted core is markedly different from that of normal stars with the same mass. They undergo a long-lived period of hydrogen shell burning close to the main-sequence band in the Hertzsprung-Russell diagram and spend the initial part of core helium burning as compact blue supergiants.
15 pages, 15 figures, 6 tables. Accepted for publication in MNRAS
References in corpus (17)
- Binary interaction dominates the evolution of massive stars
- The rotation rates of massive stars: the role of binary interaction through tides, mass transfer and mergers
- Updated Electron-Conduction Opacities: The Impact on Low-Mass Stellar Models
- Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models
- Thermohaline mixing: A physical mechanism governing the photospheric composition of low-mass giants
- The VLT-FLAMES Survey of Massive Stars: Observations centered on the Magellanic Cloud clusters NGC 330, NGC 346, NGC 2004, and the N11 region
- The evolution of runaway stellar collision products
- A multiphysics and multiscale software environment for modeling astrophysical systems
- Astrophysical Smooth Particle Hydrodynamics
- Collisions and close encounters involving massive main-sequence stars
- Evolution of stellar collision products in open clusters. I. Blue stragglers in N-body models of M67
- The Origins of Blue Stragglers and Binarity in Globular Clusters
- Evolution of Collisionally Merged Massive Stars
- Mixing in massive stellar mergers
- Evolution of stellar collision products in open clusters. II. A grid of low-mass collisions
- On the onset of runaway stellar collisions in dense star clusters I. Dynamics of the first collision
- Does simultaneous solution matter for stellar evolution codes?
Cited by in corpus (82)
- Formation of Double Neutron Star Systems
- The incidence of stellar mergers and mass gainers among massive stars
- Massive black hole binaries from runaway collisions: the impact of metallicity
- Delay-time distribution of core-collapse supernovae with late events resulting from binary interaction
- The ages of young star clusters, massive blue stragglers and the upper mass limit of stars: analysing age dependent stellar mass functions
- The impact of companions on stellar evolution
- Luminous Blue Variables and superluminous supernovae from binary mergers
- Rejuvenation of stellar mergers and the origin of magnetic fields in massive stars
- GW231123: a Binary Black Hole Merger with Total Mass 190-265
- Evolution of Mass Functions of Coeval Stars through Wind Mass Loss and Binary Interactions
- Looks can be deceiving: underestimating the age of single white dwarfs due to binary mergers
- Spectroscopic and physical parameters of Galactic O-type stars. III. Mass discrepancy and rotational mixing
- Synthetic catalog of black holes in the Milky Way
- The diverse lives of progenitors of hydrogen-rich core-collapse supernovae: the role of binary interaction
- The possible role of stellar mergers for the formation of multiple stellar populations in globular clusters
- Stellar mergers as the origin of the blue main-sequence band in young star clusters
- The Uncertain Future of Massive Binaries Obscures the Origin of LIGO/Virgo Sources
- Partial-envelope stripping and nuclear-timescale mass transfer from evolved supergiants at low metallicity
- Populations of stellar mass Black holes from binary systems
- The Stellar Merger Scenario for Black Holes in the Pair-instability Gap
- Luminous Red Novae: population models and future prospects
- Formation of black holes in the pair-instability mass gap: evolution of a post-collision star
- The VLT-FLAMES Tarantula Survey XXV. Surface nitrogen abundances of O-type giants and supergiants
- The IACOB project. VI. On the elusive detection of massive O-type stars close to the ZAMS
- Simulating the formation of Carinae's surrounding nebula through unstable triple evolution and stellar merger-induced eruption
- Pre-supernova evolution and final fate of stellar mergers and accretors of binary mass transfer
- Light Curve Model for Luminous Red Novae and Inferences about the Ejecta of Stellar Mergers
- JWST's PEARLS: Mothra, a new kaiju star at z=2.091 extremely magnified by MACS0416, and implications for dark matter models
- Formation of supermassive black hole seeds in nuclear star clusters via gas accretion and runaway collisions
- Formation of supermassive stars in the first star clusters
- Growth of intermediate mass black holes by tidal disruption events in the first star clusters
- Hydrodynamical simulations and similarity relations for eruptive mass loss from massive stars
- The Formation of Very Massive Stars
- Numerical experiments to help understand cause and effect in massive star evolution
- A magnetic massive star has experienced a stellar merger
- Massive Stellar Mergers as Precursors of Hydrogen-rich Pulsational Pair Instability Supernovae
- B fields in OB stars (BOB): on the detection of weak magnetic fields in the two early B-type stars beta CMa and epsilon CMa
- Blue supergiants as descendants of magnetic main sequence stars
- Formation of black holes in the pair-instability mass gap: Hydrodynamical simulations of a head-on massive star collision
- Two spotted and magnetic early B-type stars in the young open cluster NGC2264 discovered by MOST and ESPaDOnS
- Very massive stars in not so massive clusters
- A Fresh Look at AGB stars in Galactic Open Clusters with Gaia: Impact on Stellar Models and the Initial-Final Mass Relation
- The IACOB project X. Large-scale quantitative spectroscopic analysis of Galactic luminous blue stars
- The effect of mass loss in models of red supergiants in the Small Magellanic Cloud
- The effects of surface fossil magnetic fields on massive star evolution: III. The case of Sco
- Effect of mass loss due to stellar winds on the formation of supermassive black hole seeds in dense nuclear star clusters
- Binary black hole mergers from merged stars in the Galactic field
- The Carnegie Supernova Project II. Observations of the luminous red nova AT 2014ej
- Chemical abundances of fast-rotating massive stars. II. Interpretation and comparison with evolutionary models
- The origin of the two populations of blue stragglers in M30
- The Art of Modeling Stellar Mergers and the Case of the B[e] Supergiant R4 in the Small Magellanic Cloud
- First detections of FS Canis Majoris stars in clusters. Evolutionary state as constrained by coeval massive stars
- The blue supergiant MN18 and its bipolar circumstellar nebula
- New observations of NGC 1624-2 reveal a complex magnetospheric structure and underlying surface magnetic geometry
- The strange evolution of the Large Magellanic Cloud Cepheid OGLE-LMC-CEP1812
- Populations of evolved massive binary stars in the Small Magellanic Cloud I: Predictions from detailed evolution models
- Mechanical feedback from stellar winds with an application to galaxy formation at high redshift
- Mergers prompted by dynamics in compact, multiple-star systems: a stellar-reduction case for the massive triple TIC 470710327
- CO, Water, and Possible Methanol in Eta Carinae Approaching Periastron
- Tracing the evolution of short-period binaries with super-synchronous fast rotators
- Massive black hole formation in Population III star clusters
- The population synthesis of Wolf-Rayet stars involving binary merger channels
- CPD-64 2731: a massive spun-up and rejuvenated high-velocity runaway star
- The Transformative Journey of HD 93521
- Collision-induced mass loss and mass gain on an extremely massive star. An analytical approach and a static proto-globular cluster test-case
- Mergers all the way down: stellar collisions and kinematics of a dense hierarchically forming massive star cluster in a dwarf starburst
- Supernovae from stellar mergers and accretors of binary mass transfer: Implications for Type IIP, 1987A-like and interacting supernovae
- Binary imposters: Mergers in massive hierarchical triple stars
- A comprehensive grid of massive binary evolution models for the Galaxy - Surface properties of post-mass transfer stars
- The origins of low-luminosity supernovae: the case of SN 2016bkv
- Two-Dimensional Radiation-Hydrodynamic Simulations of Luminous Red Novae
- The drastic impact of Eddington-limit induced mass ejections on massive star populations
- The structure and evolution of a high-mass stellar merger in the Hertzsprung gap
- Magnetic Fields in Stars: Origin and Impact
- Luminous Fast Blue Optical Transients as "Failed" Gravitational-wave Sources: Helium CoreBlack Hole Mergers Following Delayed Dynamical Instability
- Formation of massive close binaries I. Detached evolution
- Explanations for the two-component spectral energy distributions of gravitationally lensed stars at high redshifts
- FROST-CLUSTERS -- III. Metallicity-dependent intermediate mass black hole formation by runaway collisions in dense star clusters
- Spectroscopic Line Modeling of the Fastest Rotating O-type Stars
- Kinematics of Wolf-Rayet Stars in the LMC: Clues to Subtype Origins
- Chemical fingerprints of binary mass transfer in massive stars
- Mass and Spin Growth of Very Massive Stars in Star Clusters Potentially Associated with Little Red Dots