PSR J0007+7303 in the CTA1 SNR: New Gamma-ray Results from Two Years of Fermi-LAT Observations
arXiv:1107.4151 · doi:10.1088/0004-637X/744/2/146
Abstract
One of the main results of the Fermi Gamma-Ray Space Telescope is the discovery of γ-ray selected pulsars. The high magnetic field pulsar, PSR J0007+7303 in CTA1, was the first ever to be discovered through its γ-ray pulsations. Based on analysis of 2 years of LAT survey data, we report on the discovery of γ-ray emission in the off-pulse phase interval at the ~ 6σ level. The flux from this emission in the energy range E \geq 100 MeV is F_100 = (1.73\pm0.40)\times10^(-8) photons/cm^2/s and is best fitted by a power law with a photon index of Γ = 2.54\pm0.14. The pulsed γ-ray flux in the same energy range is F_100 = (3.95\pm0.07)\times10^(-7) photons/cm^2/s and is best fitted by an exponentially-cutoff power-law spectrum with a photon index of Γ = 1.41 \pm 0.23 and a cutoff energy E_c = 4.04 \pm 0.20 GeV. We find no flux variability neither at the 2009 May glitch nor in the long term behavior. We model the γ-ray light curve with two high-altitude emission models, the outer gap and slot gap, and find that the model that best fits the data depends strongly on the assumed origin of the off-pulse emission. Both models favor a large angle between the magnetic axis and observer line of sight, consistent with the nondetection of radio emission being a geometrical effect. Finally we discuss how the LAT results bear on the understanding of the cooling of this neutron star.
Submitted to the Astrophysical Journal
References in corpus (9)
- Gamma-ray flares from the Crab Nebula
- Detection of 16 Gamma-Ray Pulsars Through Blind Frequency Searches Using the Fermi LAT
- Precise Gamma-Ray Timing and Radio Observations of 17 Fermi Gamma-Ray Pulsars
- Population synthesis of radio and gamma-ray millisecond pulsars from the Galactic disk
- Fermi-LAT Search for Pulsar Wind Nebulae around gamma-ray Pulsars
- Pulsar Pair Cascades in a Distorted Magnetic Dipole Field
- X-ray pulsations from the radio-quiet gamma-ray pulsar in CTA 1
- Fermi Large Area Telescope Observations of Gamma-ray Pulsars PSR J1057-5226, J1709-4429, and J1952+3252
- Detection of an X-ray Pulsation for the Gamma-ray Pulsar Centered in CTA 1
Cited by in corpus (21)
- The Second Fermi Large Area Telescope Catalog of Gamma-ray Pulsars
- Search for Spatially Extended Fermi-LAT Sources Using Two Years of Data
- Thermal luminosities of cooling neutron stars
- Nuclear Equation of state for Compact Stars and Supernovae
- Discovery of TeV Gamma-ray Emission from CTA 1 by VERITAS
- Molecular environment, reverberation, and radiation from the pulsar wind nebula in CTA 1
- PSR J2030+3641: radio discovery and gamma-ray study of a middle-aged pulsar in the now identified Fermi-LAT source 1FGL J2030.0+3641
- Population synthesis of young isolated neutron stars: the effect of fallback disk accretion and magnetic field evolution
- Astrophysical Observations of a Dark Matter-Baryon Fifth Force
- A systematic synchro-curvature modelling of pulsar -ray spectra unveils hidden trends
- Origin of TeV Galactic Cosmic Rays
- An assessment of the pulsar outer gap model. II: Implications for the predicted -ray spectra
- Gamma-ray emission from PSR J0007+7303 using 7 years of Fermi Large Area Telescope observations
- Optical detection of the black widow binary PSR J2052+1219
- Deep optical observations of the gamma-ray pulsar PSR J0007+7303 in the CTA 1 supernova remnant
- Prospects for the detection of high-energy (E>25 GeV) Fermi pulsars with the Cherenkov Telescope Array
- Chandra Observations of the field containing HESS J1616-508
- An analytic approach for the study of pulsar spindown
- Constraining the production of cosmic rays by pulsars
- Variable gamma-ray sky at 1 GeV
- Pulsar Emission Geometry and Accelerating Field Strength