Radio Spectrum and Distance of the SNR HB9
arXiv:astro-ph/0606598 · doi:10.1051/0004-6361:20065895
Abstract
New images are presented of the supernova remnant (SNR) HB9 based on 408 MHz and 1420 MHz continuum emission and HI-line emission data of the Canadian Galactic Plane Survey (CGPS) by the Dominion Radio Astrophysical Observatory (DRAO). Two methods of spectral index analysis for HB9 are presented and compared: one removes compact sources at both frequencies but is limited to the resolution of the 408 MHz image; the other removes compact sources only in the 1420 MHz image so is effective at higher spatial resolution. The second allows more detailed spectral index variation studies than the first. The two T-T plot methods and new integrated flux densities give spectral index (S_ν\proptoν^{-alpha}) for the whole of HB9 of 0.48+-0.03; and 0.47+-0.06, respectively. These are lower than previous spectral index for HB9 (alpha=0.61). Spatial variations of spectral index are derived using the second method and yield a steeper spectral index for interior regions than for the rim. This can be explained by a standard curved interstellar electron energy spectrum combined with lower interior magnetic field compared to that near the outer shock, which results in a larger proportion of steep spectrum emission for lines-of-sight through the central body of the SNR. HI observations show structures probably associated with the SNR in the radial velocity range -3 to -9 km/s and suggest a distance of 0.8+-0.4 kpc for the SNR. This is consistent with the distance to the radio pulsar 0458+46, offset from the center of HB9 by 23'. However the pulsar spindown and kinematic ages are significantly greater than estimates of the SNR age: the Sedov age for HB9 is 6600 yr and the evaporative cloud model yields ages of 4000-7,000 yr.
8 pages, 6 figures, 1 table, accepted by A&A
References in corpus (1)
Cited by in corpus (28)
- Galactic electrons and positrons at the Earth:new estimate of the primary and secondary fluxes
- Formation Rates and Evolution Histories of Magnetars
- Distances, Radial Distribution and Total Number of Galactic Supernova Remnants
- Evolutionary Models for 43 Galactic Supernova Remnants with Distances and X-ray Spectra
- A Systematic Study of the dust of Galactic Supernova Remnants I. The Distance and the Extinction
- Multimessenger astronomy with the Einstein Telescope
- Perspective on the cosmic-ray electron spectrum above TeV
- Learning About the Magnetar Swift J1834.9-0846 from its Wind Nebula
- Deep XMM-Newton Observations Reveal the Origin of Recombining Plasma in the Supernova Remnant W44
- Fermi LAT Observation of Supernova Remnant HB9
- A systematic study of soft X-ray pulse profiles of magnetars in quiescence
- Distance of PSR B0458+46 indicated by FAST HI absorption observations
- Statistically study the optimal local sources for cosmic ray nuclei and electron
- A search for runaway stars in twelve Galactic supernova remnants
- Study on the escape timescale of high-energy particles from supernova remnants through thermal X-ray properties
- On the Diversity of Compact Objects within Supernova Remnants II: Energy Loss Mechanisms
- Counterparts of Far Eastern Guest Stars: Novae, supernovae, or something else?
- Long-term evolution of non-thermal emission from Type Ia and core-collapse supernova remnants in a diversified circumstellar medium
- Detection of gamma rays around SNR HB9 and its implication to the diffusive shock-acceleration history
- X-Ray Observations of Magnetar SGR 0501+4516 from Outburst to Quiescence
- The infrared counterpart and proper motion of magnetar SGR0501+4516
- X-ray emission from the mixed-morphology supernova remnant HB 9
- Regions of suppressed diffusion around supernova remnants?
- Optical observations of the Galactic SNR HB9 and H II region G159.2+3.3
- The short bursts in SGR 1806-20, 1E 1048-5937 and SGR 0501+4516
- Examining a hadronic -ray scenario for the radiative shell & molecular clouds of the old GeV supernova remnant G298.60.0
- Magnetic field properties of the SNR HB 9
- A possibility of interpretation of the cosmic ray kneenear 10 TV as a contribution of a single close source