The long and the short of it: modelling double neutron star and collapsar Galactic dynamics
arXiv:1004.0131 · doi:10.1111/j.1365-2966.2010.16717.x
Abstract
The work presented here examines populations of double compact binary systems and tidally enhanced collapsars. We make use of BINPOP and BINKIN, two components of a recently developed population synthesis package. Results focus on correlations of both binary and spatial evolutionary population characteristics. Pulsar and long duration gamma-ray burst observations are used in concert with our models to draw the conclusions that: double neutron star binaries can merge rapidly on timescales of a few million years (much less than that found for the observed double neutron star population), common envelope evolution within these models is a very important phase in double neutron star formation, and observations of long gamma-ray burst projected distances are more centrally concentrated than our simulated coalescing double neutron star and collapsar Galactic populations. Better agreement is found with dwarf galaxy models although the outcome is strongly linked to the assumed birth radial distribution. The birth rate of the double neutron star population in our models range from 4-160 Myr^-1 and the merger rate ranges from 3-150 Myr^-1. The upper and lower limits of the rates results from including electron capture supernova kicks to neutron stars and decreasing the common envelope efficiency respectively. Our double black hole merger rates suggest that black holes should receive an asymmetric kick at birth.
Accepted by MNRAS, 18 pages, 12 figures, 5 tables
References in corpus (20)
- The Supernova -- Gamma-Ray Burst Connection
- Long gamma-ray bursts and core-collapse supernovae have different environments
- Thermonuclear (type-I) X-ray bursts observed by the Rossi X-ray Timing Explorer
- On The Maximum Mass of Stellar Black Holes
- The Parkes multibeam pulsar survey: VI. Discovery and timing of 142 pulsars and a Galactic population analysis
- The Galaxy Population Hosting Gamma-Ray Bursts
- A catalogue of low-mass X-ray binaries in the Galaxy, LMC, and SMC (Fourth edition)
- Formation and evolution of compact binaries in globular clusters: II. Binaries with neutron stars
- An Eccentric Binary Millisecond Pulsar in the Galactic Plane
- Long Gamma-Ray Bursts and Type Ic Core Collapse Supernovae Have Similar Locations in Hosts
- The Interaction of Stellar Objects within a Common Envelope
- The Total Merger Rate of Compact Object Binaries In The Local Universe
- Detection of Wolf-Rayet stars in host galaxies of Gamma-Ray Bursts (GRBs): are GRBs produced by runaway massive stars ejected from high stellar density regions ?
- Populating the Galaxy with low-mass X-ray binaries
- Gamma-Ray Bursts from tidally spun-up Wolf-Rayet stars?
- A Chandra Catalog of X-ray Sources in the Central 150 pc of the Galaxy
- Double-core evolution and the formation of neutron-star binaries with compact companions
- Populating the Galaxy with pulsars I: stellar & binary evolution
- Missing Molecular Hydrogen and the Physical Conditions of GRB Host Galaxies
- Long Gamma-Ray Bursts and the Morphology of their Host Galaxies
Cited by in corpus (12)
- Binary neutron-star mergers: a review of Einstein's richest laboratory
- The Evolution of Compact Binary Star Systems
- Radio Counterparts of Compact Binary Mergers detectable in Gravitational Waves: A Simulation for an Optimized Survey
- Modelling Neutron Star-Black Hole Binaries: Future Pulsar Surveys and Gravitational Wave Detectors
- Preparing the next gravitational million-body simulations: Evolution of single and binary stars in Nbody6++GPU, MOCCA and McLuster
- The eccentricity distribution of compact binaries
- The Einstein@Home search for radio pulsars and PSR J2007+2722 discovery
- Modeling Fast Radio Burst Dispersion and Scattering Properties in the First CHIME/FRB Catalog
- Modelling Double Neutron Stars: Radio and Gravitational Waves
- Evolutionary Channels for the Formation of Double Neutron Stars
- Gamma Ray Bursts and their links with Supernovae and Cosmology
- Accretion, Ablation and Propeller Evolution in Close Millisecond Pulsar Binary Systems