Far-ultraviolet Emission-line Morphologies of the Supernova Remnant G65.3+5.7
arXiv:1008.3240 · doi:10.1088/0004-637X/722/1/388
Abstract
We present the first far-ultraviolet (FUV) emission-line morphologies of the whole region of the supernova remnant (SNR) G65.3+5.7 using the FIMS/SPEAR data. The morphologies of the C IV λλ1548, 1551, He II λ1640, and O III] λλ1661, 1666 lines appear to be closely related to the optical and/or soft X-ray images obtained in previous studies. Dramatic differences between the C IV morphology and the optical [O III] λ5007 image provide clues to a large resonant-scattering region and a foreground dust cloud. The FUV morphologies also reveal the overall distribution of various shocks in different evolutionary phases and an evolutionary asymmetry between the east and the southwest sides in terms of Galactic coordinates, possibly due to a Galactic density gradient in the global scale. The relative X-ray luminosity of G65.3+5.7 to C IV luminosity is considerably lower than those of the Cygnus Loop and the Vela SNRs. This implies that G65.3+5.7 has almost evolved into the radiative stage in the global sense and supports the previous proposal that G65.3+5.7 has lost its bright X-ray shell and become a member of mixed-morphology SNRs as it has evolved beyond the adiabatic stage.
6 pages, 3 figures, accepted for publication in The ApJ
References in corpus (7)
- HEALPix -- a Framework for High Resolution Discretization, and Fast Analysis of Data Distributed on the Sphere
- The SPEAR Instrument and On-Orbit Performance
- The Spectroscopy of Plasma Evolution from Astrophysical Radiation Mission
- Radio properties of the low surface brightness SNR G65.2+5.7
- SPEAR Far Ultraviolet Spectral Images of the Cygnus Loop
- Far Ultraviolet Spectral Images of the Vela Supernova Remnant
- G65.2+5.7: A Thermal Composite Supernova Remnant With a Cool Shell
Cited by in corpus (4)
- Observation of the Far-ultraviolet Continuum Background with SPEAR/FIMS
- Far-Ultraviolet Observations of the Spica Nebula and the Interaction Zone
- Global distribution of far-ultraviolet emissions from highly ionized gas in the Milky Way
- Space Missions for Astronomy and Astrophysics in Korea: Past, Present, and Future