Empirical constraints on the GR electric field associated with PSR J0437-4715
arXiv:astro-ph/0412372 · doi:10.1086/427991
Abstract
We simulate the magnetosphere of the nearby millisecond pulsar PSR J0437-4715, which is expected to have an unscreened electric potential due to the lack of magnetic pair production. We incorporate General Relativistic (GR) effects and study curvature radiation (CR) by primary electrons, but neglect inverse Compton (IC) scattering of thermal X-ray photons by these electrons. We find that the CR spectrum cuts off at energies below ~ 17 GeV, well below the threshold of the H.E.S.S. telescope <~ 100 GeV, while other models predict a much higher cutoff of >~ 100 GeV. GR theory also predicts a relatively narrow pulse of ~ 0.2 phase width centered on the magnetic axis. EGRET observations above 100 MeV significantly constrain the application of the Muslimov & Harding (1997) model for gamma-ray production as a result of GR frame dragging, and ultimately its polar cap (PC) current and accelerating potential. Whereas the standard prediction of this pulsar's gamma-ray luminosity due to GR frame dragging is ~10% of the spindown power, a non-detection by forthcoming H.E.S.S. observations will constrain it to <~ 0.3%, enforcing an even more severe revision of the accelerating electric field and PC current.
11 pages, 2 figures, accepted for publication in ApJL
References in corpus (3)
Cited by in corpus (14)
- Probing millisecond pulsar emission geometry using light curves from the Fermi Large Area Telescope
- Population synthesis of radio and gamma-ray millisecond pulsars from the Galactic disk
- Predictions of Gamma-ray Emission from Globular Cluster Millisecond Pulsars Above 100 MeV
- Population syntheses of millisecond pulsars from the Galactic Disk and Bulge
- Constraining A General-Relativistic Frame-Dragging Model for Pulsed Radiation from a Population of Millisecond Pulsars in 47 Tucanae using GLAST/LAT
- Very-High-Energy Emission From Pulsars
- TeV gamma-ray emission initiated by the population or individual millisecond pulsars within globular clusters
- Deep observations of the globular cluster M15 with the MAGIC telescopes
- Numerical modelling of gamma-ray emission produced by electrons originating from the magnetospheres of millisecond pulsars in globular clusters
- High energy gamma-ray emission from compact galactic sources in the context of observations with the next generation Cherenkov Telescope Arrays
- Identifying the brightest Galactic globular clusters for future observations by H.E.S.S. and CTA
- Gamma-rays from millisecond pulsars in Globular Clusters
- Assessing Uncertainties in the Predicted Very-High-Energy Flux of Globular Clusters in the Cherenkov Telescope Array Era
- Unraveling the Emission Geometry of the Fermi Millisecond Pulsars