How mergers magnetise massive stars
arXiv:1910.14058 · doi:10.1038/s41586-019-1621-5
Abstract
Magnetic fields are ubiquitous in the Universe. The Sun's magnetic field drives the solar wind and causes solar flares and other energetic surface phenomena that profoundly affect space weather here on Earth. The first magnetic field in a star other than the Sun was detected in 1947 in the peculiar A-type star 78 Vir. It is now known that the magnetic fields of the Sun and other low-mass stars (<1.5 solar masses) are generated in-situ by a dynamo process in their turbulent, convective envelopes. Unlike such stars, intermediate-mass and high-mass stars (>1.5 solar masses; referred to as "massive" stars here) have relatively quiet, radiative envelopes where a solar-like dynamo cannot operate. However, about 10% of them, including 78 Vir, have strong, large-scale surface magnetic fields whose origin has remained a major mystery. The massive star Sco is a prominent member of this group and appears to be surprisingly young compared to other presumably coeval members of the Upper Scorpius association. Here, we present the first 3D magneto-hydrodynamical simulations of the coalescence of two massive main-sequence stars and 1D stellar evolution computations of the subsequent evolution of the merger product that can explain Sco's magnetic field, apparent youth and other observed characteristics. We argue that field amplification in stellar mergers is a general mechanism to form strongly-magnetised massive stars. These stars are promising progenitors of those neutron stars that host the strongest magnetic fields in the Universe, so-called magnetars, and that may give rise to some of the enigmatic fast radio bursts. Strong magnetic fields affect the explosions of core-collapse supernovae and, moreover, those magnetic stars that have rapidly-rotating cores at the end of their lives might provide the right conditions to power long-duration gamma-ray bursts and super-luminous supernovae.
This is the authors' initially submitted version of a paper that is published in the October 10th 2019 issue of Nature at https://www.nature.com/articles/s41586-019-1621-5
References in corpus (40)
- The chemical composition of the Sun
- HEALPix -- a Framework for High Resolution Discretization, and Fast Analysis of Data Distributed on the Sphere
- Modules for Experiments in Stellar Astrophysics (MESA)
- Modules for Experiments in Stellar Astrophysics (MESA): Giant Planets, Oscillations, Rotation, and Massive Stars
- Modules for Experiments in Stellar Astrophysics (MESA): Binaries, Pulsations, and Explosions
- E pur si muove: Galiliean-invariant cosmological hydrodynamical simulations on a moving mesh
- Modules for Experiments in Stellar Astrophysics (MESA): Convective Boundaries, Element Diffusion, and Massive Star Explosions
- Pre-Supernova Evolution of Massive Single and Binary Stars
- Supernova Light Curves Powered by Young Magnetars
- The McGill Magnetar Catalog
- Radioactive 26Al and massive stars in the Galaxy
- Magnetic fields of non-degenerate stars
- The surprising magnetic topology of tauSco: fossil remnant or dynamo output?
- Producing ultra-strong magnetic fields in neutron star mergers
- Stable magnetic fields in stellar interiors
- The incidence of stellar mergers and mass gainers among massive stars
- Millisecond Magnetar Birth Connects FRB 121102 to Superluminous Supernovae and Long Duration Gamma-ray Bursts
- Simulations of magnetic fields in isolated disk galaxies
- Magnetohydrodynamics on an unstructured moving grid
- Dynamical Simulations of Magnetically Channeled Line-Driven Stellar Winds: III. Angular Momentum Loss and Rotational Spindown
- The MiMeS survey of magnetism in massive stars: Magnetic analysis of the O-type stars
- The Long-Term Evolution of Double White Dwarf Mergers
- On the birthrates of Galactic neutron stars
- Magnetized Relativistic Jets and Long-Duration GRBs from Magnetar Spindown during Core-Collapse Supernovae
- Superluminous supernovae
- Rejuvenation of stellar mergers and the origin of magnetic fields in massive stars
- Spectral analysis of early-type stars using a genetic algorithm based fitting method
- B fields in OB stars (BOB): low-resolution FORS2 spectropolarimetry of the first sample of 50 massive stars
- The Most Magnetic Stars
- Magnetic field amplification and magnetically supported explosions of collapsing, non-rotating stellar cores
- The Viscous Evolution of White Dwarf Merger Remnants
- Multiplicity among chemically peculiar stars II. Cool magnetic Ap stars
- The Post-Merger Magnetized Evolution of White Dwarf Binaries: The Double-Degenerate Channel of Sub-Chandrasekhar Type Ia Supernovae and the Formation of Magnetized White Dwarfs
- Fundamental properties of nearby single early B-type stars
- Magnetic Field Amplification During the Common Envelope Phase
- Constructing stable 3D hydrodynamical models of giant stars
- Termination of the magnetorotational instability via parasitic instabilities in core-collapse supernovae
- Magnetized Moving Mesh Merger of a Carbon-Oxygen White Dwarf Binary
- The BinaMIcS project: understanding the origin of magnetic fields in massive stars through close binary systems
- A Common Envelope Binary Star Origin of Long Gamma-ray Bursts
Cited by in corpus (157)
- The origin and evolution of magnetic white dwarfs in close binary stars
- Polluting the pair-instability mass gap for binary black holes through super-Eddington accretion in isolated binaries
- Periodic Fast Radio Bursts from Luminous X-ray Binaries
- Why binary interaction does not necessarily dominate the formation of Wolf-Rayet stars at low metallicity
- Detailed models of interacting short-period massive binary stars
- Stellar mergers as the origin of the blue main-sequence band in young star clusters
- Long-term evolution of a magnetic massive merger product
- Effects of close binary evolution on the main-sequence morphology of young star clusters
- Partial-envelope stripping and nuclear-timescale mass transfer from evolved supergiants at low metallicity
- The Stellar Merger Scenario for Black Holes in the Pair-instability Gap
- Modeling of Magneto-Rotational Stellar Evolution I. Method and first applications
- MOBSTER -- VI. The crucial influence of rotation on the radio magnetospheres of hot stars
- The effects of surface fossil magnetic fields on massive star evolution: II. Implementation of magnetic braking in MESA and implications for the evolution of surface rotation in OB stars
- Effect of binary evolution on the inferred initial and final core masses of hydrogen-rich, Type~II supernova progenitors
- The IACOB project. VII. The rotational properties of Galactic massive O-type stars revisited
- A global model of the magnetorotational instability in protoneutron stars
- A scaling relationship for non-thermal radio emission from ordered magnetospheres: from the top of the Main Sequence to planets
- Three-dimensional core-collapse supernovae with complex magnetic structures: I. Explosion dynamics
- The IACOB project. VI. On the elusive detection of massive O-type stars close to the ZAMS
- Asteroseismic inference of the near-core magnetic field strength in the main sequence B star HD 43317
- Simulating the formation of Carinae's surrounding nebula through unstable triple evolution and stellar merger-induced eruption
- Localized FRBs are Consistent with Magnetar Progenitors Formed in Core-Collapse Supernovae
- Pre-supernova evolution and final fate of stellar mergers and accretors of binary mass transfer
- Bipolar planetary nebulae from common envelope evolution of binary stars
- Light Curve Model for Luminous Red Novae and Inferences about the Ejecta of Stellar Mergers
- Formation of sdB-stars via common envelope ejection by substellar companions
- A massive helium star with a sufficiently strong magnetic field to form a magnetar
- MRI-driven dynamos in protoneutron stars
- A new scenario for magnetar formation: Tayler-Spruit dynamo in a proto-neutron star spun up by fallback
- The orbit and stellar masses of the archetype colliding-wind binary WR 140
- Binarity at LOw Metallicity (BLOeM): a spectroscopic VLT monitoring survey of massive stars in the SMC
- A magnetic massive star has experienced a stellar merger
- Evolution of massive stellar triples and implications for compact object binary formation
- Constraining the Overcontact Phase in Massive Binary Evolution I. Mixing in V382 Cyg, VFTS 352, and OGLE SMC-SC10 108086
- Octo-Tiger: A New, 3D Hydrodynamic Code for Stellar Mergers that uses HPX Parallelisation
- Asteroseismic Fingerprints of Stellar Mergers
- 3D Simulations of Strongly Magnetised Non-Rotating Supernovae: Explosion Dynamics and Remnant Properties
- Formation of black holes in the pair-instability mass gap: Hydrodynamical simulations of a head-on massive star collision
- Molecular remnant of Nova 1670 (CK Vulpeculae). II. A three-dimensional view on the gas distribution and velocity field
- The VLT-FLAMES Tarantula Survey: Observational evidence for two distinct populations of massive runaway stars in 30 Doradus
- The effects of surface fossil magnetic fields on massive star evolution: IV. Grids of models at Solar, LMC, and SMC metallicities
- MRI-driven dynamo at very high magnetic Prandtl numbers
- Stellar Core-Merger-Induced Collapse: New Formation Pathways for Black Holes, Thorne-ytkow objects, Magnetars and Superluminous Supernovae
- Testing the fossil field hypothesis: could strongly magnetised OB stars produce all known magnetars?
- A scaled-up planetary system around a supernova progenitor
- MONOS.II. Orbit review and analysis for 35 single-lined spectroscopic binary systems and candidates
- Gravity waves in strong magnetic fields
- The IACOB project VIII. Searching for empirical signatures of binarity in fast-rotating O-type stars
- Explodability criteria for the neutrino-driven supernova mechanism
- A Sub-Solar Metallicity Progenitor for Cassiopeia A, the remnant of a Type IIb Supernova
- The effects of surface fossil magnetic fields on massive star evolution: III. The case of Sco
- Modeling overcontact binaries, I. The effect of tidal deformation
- Modeling contact binaries, II. The effect of energy transfer
- A census of OBe stars in nearby metal-poor dwarf galaxies reveals a high fraction of extreme rotators
- Binary black hole mergers from merged stars in the Galactic field
- Discovery of a highly magnetic He-sdO star from a double-degenerate binary merger
- The Art of Modeling Stellar Mergers and the Case of the B[e] Supergiant R4 in the Small Magellanic Cloud
- Exploring the borderline between stable mass transfer and mergers in close binary evolution
- Magnetic dynamos in white dwarfs -- I. Explaining the dearth of bright intermediate polars in globular clusters
- Magnetism in High-Mass Stars
- Delayed Photons from Binary Evolution Help Reionize the Universe
- Observational predictions for Thorne-Żytkow objects
- Photometric variability of the LAMOST sample of magnetic chemically peculiar stars as seen by TESS
- New observations of NGC 1624-2 reveal a complex magnetospheric structure and underlying surface magnetic geometry
- A "blue ring nebula" surrounding a thousands of years old stellar merger
- Binarity at Low Metallicity (BLOeM) -- Multiplicity properties of Oe and Be stars
- A search for strong magnetic fields in massive and very massive stars in the Magellanic Clouds
- Large-scale ordered magnetic fields generated in mergers of helium white dwarfs
- Self-consistent MHD simulation of jet launching in a neutron star - white dwarf merger
- Magnetic field evolution for crystallization-driven dynamos in C/O white dwarfs
- Constraining the overcontact phase in massive binary evolution -- II. Period stability of known O+O overcontact systems
- Boron depletion in Galactic early B-type stars reveals two different main sequence star populations
- Lithium in coalesced non-compact stars
- Populations of evolved massive binary stars in the Small Magellanic Cloud I: Predictions from detailed evolution models
- Blue Stragglers and Friends: Initial Evolutionary Pathways in Close Low-Mass Binaries: Literature Review
- Neon Abundances of B-stars in the Solar Neighborhood
- Tayler-Spruit dynamo in stably stratified rotating fluids: Application to proto-magnetars
- Mergers prompted by dynamics in compact, multiple-star systems: a stellar-reduction case for the massive triple TIC 470710327
- Looking into the cradle of the grave: J22564-5910, a young post-merger hot subdwarf?
- Tracing the evolution of short-period binaries with super-synchronous fast rotators
- NGC 6611 601: A hot pre-main sequence spectroscopic binary containing a centrifugal magnetosphere host star
- Simulating the tidal disruption of stars by stellar-mass black holes using moving-mesh hydrodynamics
- Post-dynamical inspiral phase of common envelope evolution. The role of magnetic fields
- Searching for the Next Galactic Luminous Red Nova
- Surface structure of 45 Hercules: An otherwise unremarkable Ap star with a surprisingly weak magnetic field
- Populations of evolved massive binary stars in the Small Magellanic Cloud II: Predictions from rapid binary evolution
- Gravitational wave emission from dynamical stellar interactions
- Modeling contact binaries, III. Properties of a population of close, massive binaries
- The magnetic field and magnetosphere of Plaskett's star: A fundamental shift in our understanding of the system
- Detection of an extremely strong magnetic field in the double-degenerate binary merger product HD 144941
- Simulations of the line-driven instability in magnetic hot star winds
- Collision-induced mass loss and mass gain on an extremely massive star. An analytical approach and a static proto-globular cluster test-case
- Prompt stellar and binary black hole mergers in tight triples: Insights from chemically homogeneous evolution
- Development of convective envelopes in massive stars: Implications for gravitational wave sources
- The Transformative Journey of HD 93521
- Distorted surfaces of magnetic helium-peculiar stars: An application to a Cen
- An interferometric study of B star multiplicity
- Searching for Magnetar Binaries Disrupted by Core-Collapse Supernovae
- HD 60431, the CP2 star with the shortest rotational period -- Physical parameters and period analysis
- The spectroscopic binary fraction of the young stellar cluster M17
- Supernovae from stellar mergers and accretors of binary mass transfer: Implications for Type IIP, 1987A-like and interacting supernovae
- Magnetically driven outflows in 3D common-envelope evolution of massive stars
- V772 Cas: an ellipsoidal HgMn star in an eclipsing binary
- A comprehensive grid of massive binary evolution models for the Galaxy - Surface properties of post-mass transfer stars
- Axion-photon conversion in transient compact stars: Systematics, constraints, and opportunities
- 2.5-MHD models of circumstellar discs around FS~CMa post-mergers : I. Non-stationary accretion stage
- Binary imposters: Mergers in massive hierarchical triple stars
- Ultraviolet Spectropolarimetric Diagnostics of Hot Star Magnetospheres
- How to turn a Supernova into a PeVatron
- Two-Dimensional Radiation-Hydrodynamic Simulations of Luminous Red Novae
- Discovery of extraordinary X-ray emission from magnetospheric interaction in the unique binary stellar system Lupi
- Ultraviolet Spectropolarimetry With Polstar: Using Polstar to test Magnetospheric Mass-loss Quenching
- Escape of cosmic rays from perpendicular shocks in the circumstellar magnetic field
- Non-standard modeling of a possible blue straggler star, KIC 11145123
- Atmospheric heating and magnetism driven by Ne distillation in isolated white dwarfs
- OGLE-BLAP-001 and ZGP-BLAP-08: two possible magnetic blue large-amplitude pulsators
- The luminous red nova AT 2018bwo in NGC 45 and its binary yellow supergiant progenitor
- Binarity at LOw Metallicity (BLOeM): Projected rotational velocities
- An observational study of rotation and binarity of Galactic O-type runaway stars
- The Initial Magnetic Field Distribution in AB Stars
- Thermal-timescale accretion does not always yield critical rotation in mass gainers
- The demographics of core-collapse supernovae. The role of binary evolution and CSM interaction
- The structure and evolution of a high-mass stellar merger in the Hertzsprung gap
- Extremely asymmetric bipolar magnetic field of the Bp star HD 57372
- The NGC 346 massive star census: Nitrogen abundances for apparently single, narrow lined, hydrogen core burning B-type stars
- Chandra's X-ray study confirms that the magnetic standard Ap star KQ Vel hosts a neutron star companion
- Detection of extragalactic magnetic massive stars
- Secular dipole-dipole stability of magnetic binaries
- Shaping core dynamos in A-type stars: The role of dipolar fossil fields
- Line-drag damping of Alfvén waves in radiatively driven winds of magnetic massive stars
- HD 34736: An intensely magnetised double-lined spectroscopic binary with rapidly-rotating chemically peculiar B-type components
- Unveiling Bifurcated Blue Straggler Sequences in NGC 2173: Insights from Binary Evolution
- A stringent upper limit on Be star fractions produced by binary interaction
- Red supergiant stars in binary systems II. Confirmation of B-type companions of red supergiants in the Small Magellanic Cloud using Hubble ultra-violet spectroscopy
- Detailed evolutionary models of massive contact binaries: I. Model grids and synthetic populations for the Magellanic Clouds
- Extended Main Sequences in Star Clusters
- Asteroseismology with TESS: Emergence of Dipole Mode Suppression From Subgiants?
- Spatially resolved centrifugal magnetosphere caught in motion around the secondary component of Oph A
- The angular momentum of stars reflects the relationship between star-forming environment and galactic evolution history
- A Lagrangian construction of rotating stars
- Can the Anomalous Magnetic Braking of Ap/Bp Stars Explain the Orbital Decay of Algol-type Binaries?
- Chemical fingerprints of binary mass transfer in massive stars
- Discovery of O stars in the tidal Magellanic Bridge: Stellar parameters, abundances, and feedback of the nearest metal-poor massive stars and their implication for the Magellanic System ecology
- A magnetic field detection in the massive O-type bright giant 63 Oph
- Stellar Magnetism
- Atmospheric Signatures of Common Envelope Evolution in White Dwarf Planets
- Magnetic dynamos in white dwarfs -III: explaining the occurrence of strong magnetic fields in close double white dwarfs
- Mass and Spin Growth of Very Massive Stars in Star Clusters Potentially Associated with Little Red Dots
- Spectroscopic Line Modeling of the Fastest Rotating O-type Stars
- Discovery and analysis of three magnetic hot subdwarf stars: evidence for merger-induced magnetic fields
- Non-parametric identification of single-lined binary candidates in young clusters using single-epoch spectroscopy
- Self-Similar solution of rotating eruptive outflows on its equatorial plane
- Formation of massive multiple-star systems: early migration and mergers
- Large small-scale kinematic dynamo in protoneutron stars
- Spectropolarimetry of Magnetic Chemically Peculiar Stars in the Orion OB1 Association
- Probabilistic Zeeman-Doppler imaging of stellar magnetic fields: I. Analysis of tau Scorpii in the weak-field limit
- Fluidic Endogenous Magnetism and Magnetic Monopole Clues from Liquid Metal Droplet Machine