The gamma-ray spectrum of Geminga and the inverse Compton model of pulsar high energy emission
arXiv:1203.1860 · doi:10.1088/0004-637X/757/1/88
Abstract
We reanalyze the Fermi spectra of the Geminga and Vela pulsars. We find that the spectrum of Geminga above the break is exceptionally well approximated by a simple power law without the exponential cut-off, making Geminga's spectrum similar to that of Crab. Vela's broadband gamma-ray spectrum is equally well fit with both the exponential cut-off and the double power law shapes. In the broadband double power-law fits, for a typical Fermi spectrum of a bright γ-ray pulsar, most of the errors accumulate due to the arbitrary parametrization of the spectral roll-off. In addition, a power law with an exponential cut-off gives an acceptable fit for the underlying double power-law spectrum for a very broad range of parameters, making such fitting procedures insensitive to the underlying Fermi photon spectrum. Our results have important implications for the mechanism of pulsar high energy emission. A number of observed properties of γ-ray pulsars, i.e., the broken power law spectra without exponential cut-offs and stretching in case of Crab beyond the maximal curvature limit, spectral breaks close to or exceeding the maximal breaks due to curvature emission, a Crab patterns of relative intensities of the leading and trailing pulses repeated in the X-ray and γ-ray regions, all point to the inverse Compton origin of the high energy emission from majority of pulsars.
References in corpus (7)
- Observation of Pulsed Gamma-rays Above 25 GeV from the Crab Pulsar with MAGIC
- Discovery of Localized Regions of Excess 10-TeV Cosmic Rays
- Detection of Pulsed Gamma Rays Above 100 GeV from the Crab Pulsar
- Observations of the Crab pulsar between 25 GeV and 100 GeV with the MAGIC I telescope
- The very-high energy emission from pulsars: a case for inverse Compton scattering
- The Milagro anticenter hot spots: cosmic rays from the Geminga supernova ?
- Phase resolved spectroscopy of the Vela pulsar with XMM-Newton
Cited by in corpus (7)
- Constraints on the Emission Geometries and Spin Evolution of Gamma-ray Millisecond Pulsars
- Search for VHE gamma-ray emission from Geminga pulsar and nebula with the MAGIC telescopes
- Inverse Compton model of pulsar high energy emission
- A stacked analysis of 115 pulsars observed by the Fermi LAT
- A Search for Pulsations from Geminga Above 100 GeV with VERITAS
- Search for a correlation between very-high-energy gamma rays and giant radio pulses in the Crab pulsar
- I. Inverse Compton origin of pulsar γ-ray emission. II. Reconnection model of Crab flares