Temporal and Spatial Variation of Synchrotron X-ray Stripes in Tycho's Supernova Remnant
arXiv:2007.07589 · doi:10.1093/pasj/psaa075
Abstract
The synchrotron X-ray "stripes" discovered in Tycho's supernova remnant (SNR) have been attracting attention since they may be evidence for proton acceleration up to PeV. We analyzed Chandra data taken in 2003, 2007, 2009, and 2015 for imaging and spectroscopy of the stripes in the southwestern region of the SNR. Comparing images obtained at different epochs, we find that time variability of synchrotron X-rays is not limited to two structures previously reported but is more common in the region. Spectral analysis of nine bright stripes reveals not only their time variabilities but also a strong anti-correlation between the surface brightness and photon indices. The spectra of the nine stripes have photon indices of Γ= 2.1--2.6 and are significantly harder than those of the outer rim of the SNR in the same region with Γ= 2.7--2.9. Based on these findings, we indicate that the magnetic field is substantially amplified, and suggest that particle acceleration through a stochastic process may be at work in the stripes.
8 pages, 6 figures. Accepted for publication in PASJ
Cited by in corpus (8)
- X-ray polarimetry reveals the magnetic field topology on sub-parsec scales in Tycho's supernova remnant
- Probing Magnetic Fields in Young Supernova Remnants with IXPE
- Kinematics of Supernova Remnants Using Multiepoch Maximum Likelihood Estimation: Chandra Observation of Cassiopeia A as an Example
- Detection of the hard X-ray non-thermal emission from Kepler's supernova remnant
- Discovery of Year-Scale Time Variability from Thermal X-ray Emission in Tycho's Supernova Remnant
- Bayesian insights in Tycho supernova remnant : a detailed mapping of ejecta properties
- Spatio-temporal characterization of Cassiopeia A
- Nonthermal processes and particle acceleration in supernova remnants