A Study of Radio Knots within Supernova Remnant Cassiopeia A
arXiv:2211.04777 · doi:10.3847/1538-4357/ac9ebd
Abstract
The study on the dynamic evolution of young supernova remnants (SNRs) is an important way to understand the density structure of the progenitor's circumstellar medium. We have reported the acceleration or deceleration, proper motion and brightness changes of 260 compact radio features in the second youngest known SNR Cas A at 5\,GHz based on the VLA data of five epochs from 1987 to 2004. The radio expansion center locates at . Three-quarters of the compact knots are decelerating, this suggests that there are significant density fluctuations in the stellar winds of the remnant's progenitor. We have verified that the acceleration or deceleration of compact knots are not related with the distribution of brightness. The brightening, fading, disappearing or new appearing of compact radio features in Cas A suggests that the magnetic field in the remnant is changing rapidly.
20 pages,9 figures, ApJ accepted
References in corpus (12)
- Multi-Scale CLEAN deconvolution of radio synthesis images
- The Cassiopeia A Supernova was of Type IIB
- The Expansion Asymmetry and Age of the Cassiopeia A Supernova Remnant
- Characterizing the non-thermal emission of Cas A
- Fast Variability of Nonthermal X-Ray Emission in Cassiopeia A: Probing Electron Acceleration in Reverse-Shocked Ejecta
- The Density and Mass of Unshocked Ejecta in Cassiopeia A through Low Frequency Radio Absorption
- Locating the most energetic electrons in Cassiopeia A
- Small-Scale X-ray Variability in the Cassiopeia A Supernova Remnant
- Evidence for past interaction with an asymmetric circumstellar shell in the young SNR Cassiopeia A
- A Comparison of X-ray and Optical Emission in Cassiopeia A
- Interaction between Cassiopeia A and Nearby Molecular Clouds
- The interstellar medium in young supernova remnants: key to the production of cosmic X-rays and -rays