Pulsar Binary Birthrates with Spin-Opening Angle Correlations
arXiv:0908.2049 · doi:10.1088/0004-637X/715/1/230
Abstract
Empirical birthrate estimates for pulsar binaries depend on the fraction of sky subtended by the pulsar beam: the pulsar beaming fraction. This fraction depends on both the pulsar's opening angle and the misalignment angle between its spin and magnetic axes. Previous estimates use the average value for only two pulsars, i.e. PSRs B1913+16 and B1534+12. We explore how birthrate predictions depend on assumptions about opening angle and alignment, using empirically-motivated distributions to define an effective beaming correction factor, f_{b,eff}. For most known pulsars, we expect f_{b,eff} to be less than 6. We also calculate f_{b,eff} for PSRs J0737-3039A and J1141-6545, applying the currently available constraints for their beam geometry. Our median posterior birthrate predictions for tight PSR-NS binaries, wide PSR-NS binaries, and tight PSR-WD binaries are 89/Myr, 0.84/Myr, and 34/Myr, respectively. For pulsars with spin period between 10 ms and 100 ms, we marginalized our posterior birthrate distribution P(R) over a range of plausible beaming correction factors. Our predictions are robust, changing little between several alternative misalignment angle distribution models. [ABRIDGED]
17 pages, 9 figures (color). Submitted to ApJ. IGC-09/8-2. v2: alternate short spin period, luminosity models discussed
References in corpus (15)
- Origin and structure of the Galactic disc(s)
- Kinematics and history of the solar neighbourhood revisited
- Population synthesis of radio and gamma-ray millisecond pulsars from the Galactic disk
- Multi-telescope timing of PSR J1518+4904
- The population of pulsars with interpulses and the implications for beam evolution
- Multi-frequency integrated profiles of pulsars
- Observations and Modelling of Relativistic Spin Precession in PSR J1141-6545
- Search of S3 LIGO data for gravitational wave signals from spinning black hole and neutron star binary inspirals
- A Schmidt-Kennicutt law for star formation in the Milky Way disk
- PSR J1753-2240: A mildly recycled pulsar in an eccentric binary system
- The double pulsar: evolutionary constraints from the system geometry
- Age constraints in the double pulsar system J0737-3039
- PSR J1738+0333: a new gravitational laboratory
- Effect of PSR J0737-3039 on the DNS Merger Rate and Implications for GW Detection
- A High Rate of White Dwarf-Neutron Star Mergers & Their Transients
Cited by in corpus (33)
- The Emergence of a Lanthanide-Rich Kilonova Following the Merger of Two Neutron Stars
- Formation of Double Neutron Star Systems
- The chemically homogeneous evolutionary channel for binary black hole mergers: rates and properties of gravitational-wave events detectable by advanced LIGO
- On the formation history of Galactic double neutron stars
- Rates of Compact Object Coalescences
- Compact Binary Merger Rates: Comparison with LIGO/Virgo Upper Limits
- Compact Binary Coalescences in the Band of Ground-based Gravitational-Wave Detectors
- Double neutron stars: merger rates revisited
- Dynamical scalarization of neutron stars in scalar-tensor gravity theories
- Galaxy Strategy for LIGO-Virgo Gravitational Wave Counterpart Searches
- Cosmic Rates of Black Hole Mergers and Pair-Instability Supernovae from Chemically Homogeneous Binary Evolution
- Implications of PSR J0737-3039B for the Galactic NS-NS Binary Merger Rate
- Nuclear-dominated accretion and subluminous supernovae from the merger of a white dwarf with a neutron star or black hole
- Time dependent models of accretion disks with nuclear burning following the tidal disruption of a white dwarf by a neutron star
- Radio emission from a pulsar's magnetic pole revealed by general relativity
- Nuclear Dominated Accretion Flows in Two Dimensions. I. Torus Evolution with Parametric Microphysics
- Black Hole Binaries in Galactic Nuclei and Gravitational Wave Sources
- Future prospects for ground-based gravitational wave detectors The Galactic double neutron star merger rate revisited
- Transients from ONe White-Dwarf - Neutron-Star/Black-Hole Mergers
- Nuclear Dominated Accretion Flows in Two Dimensions. II. Ejecta dynamics and nucleosynthesis for CO and ONe white dwarfs
- Heavy double neutron stars: birth, mid-life and death
- On the Fast Radio Burst and Persistent Radio Source Populations
- Short Gamma Ray Burst Formation Rate from BATSE data using E_p-L_p correlation and the minimum gravitational wave event rate of coalescing compact binary
- Merger of a White Dwarf-Neutron Star Binary to Carat Diamonds: Origin of the Pulsar Planets
- The CO White Dwarf + Intermediate Mass/Massive Star Binary Evolution: Possible Merger Origins for Peculiar Type Ia and II Supernovae
- A model of neutron-star--white-dwarf collision for fast radio bursts
- Comparing compact binary parameter distributions I: Methods
- Revisiting the Galactic Double Neutron Star merger and LIGO detection rates
- High-altitude Magnetospheric Emissions from Two Pulsars
- Prospects for detecting neutron star-white dwarf mergers with decihertz gravitational-wave observatories
- Detectability of radio afterglows from binary neutron star mergers and implications for fast radio bursts
- LB-1 is inconsistent with the X-ray source population and pulsar-black hole binary searches in the Milky Way
- Forming Double Neutron Stars using Detailed Binary Evolution Models with POSYDON: Comparison to the Galactic Systems