Measurement of the Forward Shock Velocities of the Supernova Remnant N132D Based on the Thermal X-ray Emission
arXiv:2502.15479 · doi:10.3847/1538-4357/adb8cb
Abstract
Measuring shock velocities is crucial for understanding the energy transfer processes at the shock fronts of supernova remnants (SNRs), including acceleration of cosmic rays. Here we present shock velocity measurements on the SNR N132D, based on the thermal properties of the shock-heated interstellar medium. We apply a self-consistent model developed in our previous work to X-ray data from deep Chandra observations with an effective exposure of 900 ks. In our model, both temperature and ionization relaxation processes in post-shock plasmas are simultaneously calculated, so that we can trace back to the initial condition of the shock-heated plasma to constrain the shock velocity. We reveal that the shock velocity ranges from 800 to 1500 with moderate azimuthal dependence. Although our measurement is consistent with the velocity determined by independent proper motion measurements in the south rim regions, a large discrepancy between the two measurements (up to a factor of 4) is found in the north rim regions. This implies that a substantial amount of the kinetic energy has been transferred to the nonthermal component through highly efficient particle acceleration. Our results are qualitatively consistent with the -ray observations of this SNR.
Accepted for publication in The Astrophysical Journal
References in corpus (15)
- A Catalog of Galaxy Clusters Observed by XMM-Newton
- A Physical Relationship Between Electron-Proton Temperature Equilibration and Mach Number in Fast Collisionless Shocks
- Measuring the cosmic ray acceleration efficiency of a supernova remnant
- The First X-Ray Proper-Motion Measurements of the Forward Shock in the Northeastern Limb of SN 1006
- On cosmic-ray production efficiency at supernova remnant shocks propagating into realistic diffuse interstellar medium
- Three-Dimensional Kinematic Reconstruction of the Optically-Emitting, High-Velocity, Oxygen-Rich Ejecta of Supernova Remnant N132D
- ALMA CO Observations of Gamma-Ray Supernova Remnant N132D in the Large Magellanic Cloud: Possible Evidence for Shocked Molecular Clouds Illuminated by Cosmic-Ray Protons
- Spatial and Temporal Variations of the Chandra ACIS Particle-Induced Background and Development of a Spectral-Model Generation Tool
- The interstellar medium in young supernova remnants: key to the production of cosmic X-rays and -rays
- Rapid Deceleration of Blast Waves Witnessed in Tycho's Supernova Remnant
- Spatially Resolved Chandra Spectroscopy of the Large Magellanic Cloud Supernova Remnant N132D
- Plasma Diagnostics of the Supernova Remnant N132D Using Deep XMM-Newton Observations with the Reflection Grating Spectrometer
- LMC N132D: A mature supernova remnant with a power-law gamma-ray spectrum extending beyond 8 TeV
- HST Proper Motion Measurements of Supernova Remnant N132D: Center of Expansion and Age
- Infrared Ejecta and Cold Dust in the Young Supernova Remnant N132D