Evolutionary Channels for the Formation of Double Neutron Stars
arXiv:1410.6797 · doi:10.1088/0004-637X/801/1/32
Abstract
We analyze binary population models of double-neutron stars and compare results to the accurately measured orbital periods and eccentricities of the eight known such systems in our Galaxy. In contrast to past similar studies, we especially focus on the dominant evolutionary channels (we identify three); for the first time, we use a detailed understanding of the evolutionary history of three double neutron stars as actual constraints on the population models. We find that the evolutionary constraints derived from the double pulsar are particularly tight, and less than half of the examined models survive the full set of constraints. The top-likelihood surviving models yield constraints on the key binary evolution parameters, but most interestingly reveal (i) the need for electron-capture supernovae from relatively low-mass degenerate, progenitor cores, and (ii) the most likely evolutionary paths for the rest of the known double neutron stars. In particular, we find that J1913+16 likely went through a phase of Case BB mass transfer, and J1906+0746 and J1756-2251 are consistent with having been formed in electron-capture supernovae.
17 pages, 9 figures
References in corpus (10)
- Measurement of Orbital Decay in the Double Neutron Star Binary PSR B2127+11C
- PSR J17562251: a pulsar with a low-mass neutron star companion
- Multi-telescope timing of PSR J1518+4904
- Populating the Galaxy with pulsars I: stellar & binary evolution
- The binary pulsar PSR J1811-1736: evidence of a low amplitude supernova kick
- Constraints on Natal Kicks in Galactic Double Neutron Star Systems
- The Formation of the Double Pulsar PSR J0737-3039A/B
- PSR J1753-2240: A mildly recycled pulsar in an eccentric binary system
- Double Neutron Stars: Evidence For Two Different Neutron-Star Formation Mechanisms
- PSR J1738+0333: a new gravitational laboratory
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- Formation of Double Neutron Star Systems
- POSYDON: A General-Purpose Population Synthesis Code with Detailed Binary-Evolution Simulations
- PSR J1930-1852: a pulsar in the widest known orbit around another neutron star
- Combined analysis of neutron star natal kicks using proper motions and parallax measurements for radio pulsars and Be X-ray binaries
- Observational Inference on the Delay Time Distribution of Short Gamma-ray Bursts
- Double Neutron Star Formation: Merger Times, Systemic Velocities, and Travel Distances
- A pulsar-helium star compact binary system formed by common envelope evolution
- The impact of turbulent mixing on the galactic r-process enrichment by binary neutron star mergers
- The Formation of Electron-capture Supernovae: A Review
- The Role of Strong Gravity and the Nuclear Equation of State on Neutron-Star Common-Envelope Accretion
- Formation of millisecond pulsar-helium star binaries
- On Neutron Star Natal Kicks in High-Mass X-Ray Binaries: Insights from Population Synthesis
- Forming Double Neutron Stars using Detailed Binary Evolution Models with POSYDON: Comparison to the Galactic Systems