Population study for gamma-ray pulsars with the outer gap model
arXiv:1010.5870 · doi:10.1088/0004-637X/726/1/44
Abstract
Inspired by increase of population of -ray emitting pulsars by the telescope, we perform a population study for -ray emitting canonical pulsars. We use a Monte-Carlo technique to simulate the Galactic population of neutron stars and the radio pulsars. For each simulated neutron star, we consider the -ray emission from the outer gap accelerator in the magnetosphere. In our outer gap model, we apply the gap closure mechanism proposed by Takata et al., in which both photon-photon pair-creation and magnetic pair-creation processes are considered. Simulating the sensitivities of previous major radio surveys, our simulation predicts that there are radio loud and -ray-selected -ray pulsars, which can be detected with a -ray flux . Applying the sensitivity of the six-month observation of the telescope, 40-61 radio-selected and 36-75 -ray selected pulsars are detected within our simulation. We show that the distributions of various pulsar parameters for the simulated -ray pulsars can be consistent with the observed distribution of the -ray pulsars detected by the telescope. We also predict that radio-loud and -ray-selected pulsars irradiate the Earth with a flux , and most of those -ray pulsars are distributing with a distance more than 1~kpc and a flux . The ration between the radio-selected and -ray-selected pulsars depend on the sensitivity of the radio surveys. We also discuss the Galactic distribution of the unidentified sources and the canonical -ray pulsars.
45 page, 10 figures, Accepted for publication in ApJ
References in corpus (10)
- The ATNF Pulsar Catalogue
- Detection of 16 Gamma-Ray Pulsars Through Blind Frequency Searches Using the Fermi LAT
- Observation of Pulsed Gamma-rays Above 25 GeV from the Crab Pulsar with MAGIC
- High-Altitude Emission from Pulsar Slot Gaps: The Crab Pulsar
- Fermi LAT Observations of the Vela Pulsar
- Population synthesis of radio and gamma-ray millisecond pulsars from the Galactic disk
- Outer-gap vs. Slot-gap Models for Pulsar High Energy Emissions: The Case of the Crab Pulsar
- Pulse Profiles, Spectra and Polarization Characteristics of Non-Thermal Emissions from the Crab-Like Pulsars
- Magnetic Field Evolution in Neutron Stars: One-Dimensional Multi-Fluid Model
- Gamma-ray spectral properties of mature pulsars: a two-layer model
Cited by in corpus (21)
- The soft gamma-ray pulsar population: an high-energy overview
- Light-curve modelling constraints on the obliquities and aspect angles of the young Fermi pulsars
- Gamma-ray pulsars: a gold mine
- Discovery of an unidentified Fermi object as a black widow-like millisecond pulsar
- X-ray and Gamma-ray Emissions from Different Evolutionary Stage of Rotation Powered Millisecond Pulsars
- Constraining gamma-ray pulsar gap models with a simulated pulsar population
- The Galactic population and properties of young, highly-energetic pulsars
- Obliquely rotating pulsars: screening of the inductive electric field
- Three-dimensional non-vacuum pulsar outer-gap model: Localized acceleration electric field in the higher altitudes
- Young and middle age pulsar light-curve morphology: Comparison of Fermi observations with gamma-ray and radio emission geometries
- An assessment of the pulsar outer gap model. I: Assumptions, uncertainties, and implications for the gap size and the accelerating field
- Population study for gamma-ray pulsars: (III) Radiation characteristics and viewing geometry
- Radio absorption in high-mass gamma-ray binaries
- Modeling the non-recycled Fermi gamma-ray pulsar population
- Differences between radio-loud and radio-quiet gamma-ray pulsars as revealed by Fermi
- Population study for gamma-ray pulsars; II Millisecond pulsars
- Multi-wavelength emission region of gamma-ray emitting pulsars
- Prediction of radio-quiet gamma-ray pulsar distances using the Fundamental Plane relation
- Glitches in four gamma-ray pulsars and inferences on the neutron star structure
- The Galactic population of canonical pulsars
- Pulsar electrodynamics revisited