Magnetic Flux of Progenitor Stars Sets Gamma-ray Burst Luminosity and Variability
arXiv:1409.4414 · doi:10.1093/mnras/stu2229
Abstract
Long-duration gamma-ray bursts (GRBs) are thought to come from the core-collapse of Wolf-Rayet stars. Whereas their stellar masses have a rather narrow distribution, the population of GRBs is very diverse, with gamma-ray luminosities spanning several orders of magnitude. This suggests the existence of a "hidden" stellar variable whose burst-to-burst variation leads to a spread in . Whatever this hidden variable is, its variation should not noticeably affect the shape of GRB lightcurves, which display a constant luminosity (in a time-average sense) followed by a sharp drop at the end of the burst seen with Swift/XRT. We argue that such a hidden variable is progenitor star's large-scale magnetic flux. Shortly after the core collapse, most of stellar magnetic flux accumulates near the black hole (BH) and remains there. The flux extracts BH rotational energy and powers jets of roughly a constant luminosity, . However, once BH mass accretion rate falls below , the flux becomes dynamically important and diffuses outwards, with the jet luminosity set by the rapidly declining mass accretion rate, . This provides a potential explanation for the sharp end of GRBs and the universal shape of their lightcurves. During the GRB, gas infall translates spatial variation of stellar magnetic flux into temporal variation of . We make use of the deviations from constancy in to perform stellar magnetic flux "tomography". Using this method, we infer the presence of magnetised tori in the outer layers of progenitor stars for GRB 920513 and GRB 940210.
17 pages, 26 figures, uses mn2e.cls, submitted to MNRAS
References in corpus (11)
- Measured Metallicities at the Sites of Nearby Broad-Lined Type Ic Supernovae and Implications for the SN-GRB Connection
- Neutrino-Cooled Accretion Disks around Spinning Black Hole
- Early-Time Photometry and Spectroscopy of the Fast Evolving SN 2006AJ Associated with GRB 060218
- Mass Fall-back and Accretion in the Central Engine of Gamma-Ray Bursts
- Spectropolarimetric Survey of Hydrogen-rich White Dwarf Stars
- Properties of Gamma-Ray Burst Progenitor Stars
- Stellar explosions powered by the Blandford-Znajek mechanism
- Neutrino pair annihilation near accreting, stellar-mass black holes
- Gamma-ray Burst 080319B: Evidence for Relativistic Turbulence, Not Internal Shocks
- A Turbulent Model of Gamma-Ray Burst Variability
- X-ray flares, neutrino cooled disks, and the dynamics of late accretion in GRB engines
Cited by in corpus (31)
- Magnetohydrodynamic Simulations of Active Galactic Nucleus Disks and Jets
- Magnetorotational core collapse of possible GRB progenitors. I. Explosion mechanisms
- Sgr A* near-infrared flares from reconnection events in a magnetically arrested disc
- Black hole to breakout: 3D GRMHD simulations of collapsar jets reveal a wide range of transients
- Hyperaccreting Black Hole as Gamma-Ray Burst Central Engine. II. Temporal evolution of central engine parameters during Prompt and Afterglow Phases
- How important is non-ideal physics in simulations of sub-Eddington accretion onto spinning black holes?
- Constraints on millisecond magnetars as the engines of prompt emission in gamma-ray bursts
- Bimodal Long-Lasting Components in Short Gamma-Ray Bursts: Promising Electromagnetic Counterparts to Neutron Star Binary Mergers
- Long-Lasting Black-Hole Jets in Short Gamma-Ray Bursts
- Imprints of r-process heating on fall-back accretion: distinguishing black hole-neutron star from double neutron star mergers
- Black holes, disks and jets following binary mergers and stellar collapse: The narrow range of EM luminosities and accretion rates
- Sustained super-Eddington accretion in high-redshift quasars
- Magnetorotational core collapse of possible GRB progenitors. IV. A wider range of progenitors
- R-process viable outflows are suppressed in global alpha-viscosity models of collapsar disks
- Striped Blandford/Znajek jets from advection of small scale magnetic field
- Collapsar Black Holes are Likely Born Slowly Spinning
- A collapsar origin for GRB 211211A is (just barely) possible
- What Powers the Most Relativistic Jets? II: Flat Spectrum Radio Quasars
- H-AMR FORGE'd in FIRE I: Magnetic state transitions, jet launching and radiative emission in super-Eddington, highly magnetized quasar disks formed from cosmological initial conditions
- A marginally fast-cooling proton-synchrotron model for prompt GRBs
- Winds and Disk Turbulence Exert Equal Torques on Thick Magnetically Arrested Disks
- Can MAD accretion disks launching structured jets explain both GRB and AGN engines? Magnetically arrested accretion disks launching structured jets in application to GRB and AGN engines
- Radio Loud vs. Radio Quiet Gamma-ray Bursts: the Role of Binary Progenitors
- Constraints on Gamma-ray Burst Inner Engines in a Blandford-Znajek Framework
- Maximal Jet Energy of Gamma-Ray Bursts through the Blandford-Znajek Mechanism
- Multipolar Electromagnetic Emission of Newborn Magnetar
- Deciphering the properties of the central engine in GRB collapsars
- Evidence for Low Universal Equilibrium Black Hole Spin in Luminous Magnetically Arrested Disks
- Three-dimensional GRMHD simulations of jet formation and propagation in self-gravitating collapsing stars
- Black Hole Spin-down in Collapsars in 3D Neutrino Transport GRMHD Simulations
- Connecting the early afterglow to the prompt GRB and the central engine in the striped jet model