Further Evidence for the Bimodal Distribution of Neutron Star Masses
arXiv:1006.4584 · doi:10.1088/0004-637X/719/1/722
Abstract
We use a collection of 14 well-measured neutron star masses to strengthen the case that a substantial fraction of these neutron stars was formed via electron-capture supernovae (SNe) as opposed to Fe-core collapse SNe. The e-capture SNe are characterized by lower resultant gravitational masses and smaller natal kicks, leading to lower orbital eccentricities when the e-capture SN has led to the formation of the second neutron star in a binary system. Based on the measured masses and eccentricities, we identify four neutron stars, which have a mean post-collapse gravitational mass of ~1.25 solar masses, as the product of e-capture SNe. We associate the remaining ten neutron stars, which have a mean mass of 1.35 solar masses, with Fe-core collapse SNe. If the e-capture supernova occurs during the formation of the first neutron star, then this should substantially increase the formation probability for double neutron stars, given that more systems will remain bound with the smaller kicks. However, this does not appear to be the case for any of the observed systems, and we discuss possible reasons for this.
6 pages, 3 figures; Accepted to ApJ
References in corpus (9)
- Tests of general relativity from timing the double pulsar
- The Supernova Channel of Super-AGB Stars
- Instability of a stalled accretion shock: evidence for the advective-acoustic cycle
- Pulsar spins from an instability in the accretion shock of supernovae
- Measurement of Orbital Decay in the Double Neutron Star Binary PSR B2127+11C
- Gravitational-radiation losses from the pulsar-white-dwarf binary PSR J1141-6545
- Double-core evolution and the formation of neutron-star binaries with compact companions
- Supernova explosions and the birth of neutron stars
- PSR J1738+0333: a new gravitational laboratory
Cited by in corpus (94)
- Core-Collapse Supernovae from 9 to 120 Solar Masses Based on Neutrino-powered Explosions
- Compact Remnant Mass Function: Dependence on the Explosion Mechanism and Metallicity
- The Nuclear Equation of State and Neutron Star Masses
- Formation of Double Neutron Star Systems
- The NANOGrav Nine-year Data Set: Mass and Geometric Measurements of Binary Millisecond Pulsars
- On the astrophysical robustness of neutron star merger r-process
- The Evolution of Compact Binary Star Systems
- Progenitors of gravitational wave mergers: Binary evolution with the stellar grid-based code ComBinE
- The progenitors of compact-object binaries: impact of metallicity, common envelope and natal kicks
- On the Mass Distribution and Birth Masses of Neutron Stars
- The Neutron Star Mass Distribution
- On the formation history of Galactic double neutron stars
- The Electromagnetic Signals of Compact Binary Mergers
- Supernova Simulations from a 3D Progenitor Model -- Impact of Perturbations and Evolution of Explosion Properties
- Massive runaways and walkaway stars
- The Landscape of the Neutrino Mechanism of Core-Collapse Supernovae: Neutron Star and Black Hole Mass Functions, Explosion Energies and Nickel Yields
- Evidence for a maximum mass cut-off in the neutron star mass distribution and constraints on the equation of state
- A Simple Approach to the Supernova Progenitor-Explosion Connection
- Non-Radial Instabilities and Progenitor Asphericities in Core-Collapse Supernovae
- The multi-messenger picture of compact object encounters: binary mergers versus dynamical collisions
- Advanced burning stages and fate of 8-10 Mo stars
- The Explosion of Helium Stars Evolved With Mass Loss
- Neutron Star Mergers as sites of r-process Nucleosynthesis and Short Gamma-Ray Bursts
- The mass distribution of Galactic double neutron stars
- Super-AGB Stars and their role as Electron Capture Supernova progenitors
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations I: Black Hole-Neutron Star Mergers
- The Dynamics of Neutrino-Driven Supernova Explosions after Shock Revival in 2D and 3D
- Pre-supernova evolution, compact object masses and explosion properties of stripped binary stars
- Evolution towards and beyond accretion-induced collapse of massive white dwarfs and formation of millisecond pulsars
- Two Populations of X-ray Pulsars Produced by Two Types of Supernovae
- Compact Binaries Ejected from Globular Clusters as GW Sources
- The impact of electron-capture supernovae on merging double neutron stars
- Formation of millisecond pulsars with CO white dwarf companions - I. PSR J1614-2230: Evidence for a neutron star born massive
- The electron-capture origin of supernova 2018zd
- Hydrodynamical Neutron-star Kicks in Electron-capture Supernovae and Implications for the CRAB Supernova
- On the Accretion-Fed Growth of Neutron Stars During Common Envelope
- Be X-ray binaries in the SMC as indicators of mass transfer efficiency
- On the mass distribution of neutron stars
- Remnants and ejecta of thermonuclear electron-capture supernovae: Constraining oxygen-neon deflagrations in high-density white dwarfs
- The double pulsar: evidence for neutron star formation without an iron core-collapse supernova
- Evolution of Cataclysmic Variables and Related Binaries Containing a White-Dwarf
- The demographics of neutron star - white dwarf mergers: rates, delay-time distributions and progenitors
- On the formation of GW190814
- PSR J1930-1852: a pulsar in the widest known orbit around another neutron star
- Multimessengers from core-collapse supernovae: multidimensionality as a key to bridge theory and observation
- The formation of the eccentric-orbit millisecond pulsar J1903+0327 and the origin of single millisecond pulsars
- Can Neutron-Star Mergers Explain the r-process Enrichment in Globular Clusters?
- Formation of Millisecond Pulsars from Intermediate- and Low-Mass X-ray Binaries
- Properties of Convective Oxygen and Silicon Burning Shells in Supernova Progenitors
- Evolutionary Channels for the Formation of Double Neutron Stars
- Double Neutron Star Formation: Merger Times, Systemic Velocities, and Travel Distances
- Core-Collapse Supernovae in Binaries as the Origin of Galactic Hyper-Runaway Stars
- A 1.05 Companion to PSR J2222-0137: The Coolest Known White Dwarf?
- Nucleosynthetic Constraints on the Mass of the Heaviest Supernovae
- Eight Millisecond Pulsars Discovered in the Arecibo PALFA Survey
- An Observationally-Derived Kick Distribution for Neutron Stars in Binary Systems
- The observed neutron star mass distribution as a probe of the supernova explosion mechanism
- Forward Modeling of Double Neutron Stars: Insights from Highly-Offset Short Gamma-Ray Bursts
- Stellar wind accretion and accretion disk formation: applications to neutron star high mass X-ray binaries
- Hydrodynamic Simulations of Electron-capture Supernovae: Progenitor and Dimension Dependence
- The Nature of Millisecond Pulsars with Helium White Dwarf Companions
- Explosive nucleosynthesis in the neutrino-driven aspherical supernova explosion of a non-rotating 15 star with solar metallicity
- Accretion-Induced Collapse of Dark Matter Admixed White Dwarfs -- I: Formation of Low-mass Neutron Stars
- Galactic Double Neutron Star total masses and Gaussian mixture model selection
- Remnant masses of core collapse supernovae in the jittering jets explosion mechanism
- The Pulsar Population in Globular Clusters and in the Galaxy
- The role of binding energies of neutron stars on the accretion driven evolution
- Characterizing Astrophysical Binary Neutron Stars with Gravitational Waves
- The maximum accreted mass of recycled pulsars
- Tidal effects on the radial velocity curve of HD77581 (Vela X-1)
- He star evolutionary channel to intermediate-mass binary pulsar PSR J1802-2124
- Comparison of the Core-Collapse Evolution of Two Nearly Equal Mass Progenitors
- Mass Distribution and Maximum Mass of Neutron Stars: Effects of Orbital Inclination Angle
- The birth mass function of neutron stars
- Hot subdwarf B stars with neutron star components II: Binary population synthesis
- Evolution of neutron star + He star binaries: an alternative evolutionary channel to intermediate-mass binary pulsars
- Neutron stars formation and Core Collapse Supernovae
- Analyzing the Galactic pulsar distribution with machine learning
- Observational prospects of double neutrons star mergers and their multi-messenger afterglows: LIGO discovery power, event rates and diversity
- Accretion-Induced Collapse of Dark Matter Admixed White Dwarfs -- II: Rotation and Gravitational-wave Signals
- Testing the formation scenarios of binary neutron star systems with measurements of the neutron star moment of inertia
- A promising formation channel for symbiotic X-ray binaries: cases of IGR J17329-2731 and 4U 1700+24
- Wide binary pulsars from electron-capture supernovae
- Refinement of the timing-based estimator of pulsar magnetic fields
- Supernovae from stellar mergers and accretors of binary mass transfer: Implications for Type IIP, 1987A-like and interacting supernovae
- The Formation of Electron-capture Supernovae: A Review
- The masses of neutron stars
- Multi-messenger observations in the Einstein Telescope era: binary neutron star and black hole - neutron star mergers
- The implications of a companion enhanced wind on millisecond pulsar production
- Triggering Electron Capture Supernovae: Dark Matter Effects in Degenerate White-Dwarf-like Cores of Super-Asymptotic Giant Branch Stars
- On the Formation of SMC X-1: the Effect of Mass and Orbital Angular Momentum Loss
- The binaries of the NS-NS merging events
- A Coupled Oscillator Model for the Origin of Bimodality and Multimodality
- Forming Double Neutron Stars using Detailed Binary Evolution Models with POSYDON: Comparison to the Galactic Systems