Fine-structure infrared lines from the Cassiopeia A knots
arXiv:0806.1801 · doi:10.1051/0004-6361/200810366
Abstract
Aims: Archival observations of infrared fine-structure lines of the young Galactic supernova remnant Cassiopeia A allow us to test existing models and determine the physical parameters of various regions of the fast-moving knots (FMKs), which are metal-dominated clouds of material ejected by the supernova explosion. Methods: The fluxes of the far-infrared [O i] and [O iii] lines are extracted from the previously unpublished archival ISO data. The archival Spitzer data are used to determine the fluxes of the O, Ne, Si, S, Ar and Fe ion fine-structure lines originating in the FMKs. The ratios of these line fluxes are used for the plasma diagnostics. We also determine the infrared line flux ratios to the optical [O iii] 5007 A line in the knots having previously measured reddening. Additionally, we analyze several optical and near-infrared observations of the FMKs to obtain clearer insight into the post-shock photoionized region (PIR) structure. Results: We show that the infrared oxygen line flux predictions of all existing theoretical models are correct only to within a factor of several. For the models to reproduce the observations it is essential to include the electron conductivity and effects of the dust. Detailed analysis of the diagnostic line flux ratios allows us to qualitatively confirm the general model of the FMK emission and to determine observationally the physical conditions in the PIR after the shock front. We infer that the pre-shock cloud densities most probably constitute several hundred particles per cm^3. We also determine the Cas A luminosities in the infrared continuum and lines. We show that accounting for the charge exchange processes in the post-shock PIR allows us to reproduce most of the relevant spectral line ratios even in the frame of a single-temperature model of this region. We also estimate its plasma parameters, thickness, and carbon abundance.
Version accepted by A&A, 21 page, 10 figures. v2: major changes, Section 5 added with analysis of charge-exchange process influence.
Cited by in corpus (31)
- A Herschel PACS and SPIRE study of the dust content of the Cassiopeia A supernova remnant
- The dust mass in Cassiopeia A from a spatially resolved Herschel analysis
- Dust Destruction by the Reverse Shock in the Cassiopeia A Supernova Remnant
- Phosphorus in the Young Supernova Remnant Cassiopeia A
- Dust survival rates in clumps passing through the Cas A reverse shock I: results for a range of clump densities
- Molecules and dust in Cassiopeia A: II - Dust sputtering and diagnosis of dust survival in supernova remnants
- Revisiting INTEGRAL/SPI observations of 44Ti from Cassiopeia A
- The Density and Mass of Unshocked Ejecta in Cassiopeia A through Low Frequency Radio Absorption
- The 3D Structure of N132D in the LMC: A Late-Stage Young Supernova Remnant
- Molecules and dust in Cas A: I - Synthesis in the supernova phase and processing by the reverse shock in the clumpy remnant
- The mass, location and heating of the dust in the Cassiopeia A supernova remnant
- Revisiting the dust destruction efficiency of supernovae
- Element Abundances in the Unshocked Ejecta of Cassiopeia A
- Thirty years of SN 1980K: Evidence for light echoes
- CO rotational line emission from a dense knot in Cas A Evidence for active post-reverse-shock chemistry
- Dust survival rates in clumps passing through the Cas A reverse shock -- II. The impact of magnetic fields
- Dust destruction and survival in the Cassiopeia A reverse shock
- The dust mass in Cassiopeia A from infrared and optical line flux differences
- Silicate grain growth due to ion trapping in oxygen-rich supernova remnants like Cassiopeia A
- A Deep Near-Infrared [Fe II]+[Si I] Emission Line Image of the Supernova Remnant Cassiopeia A
- The Temperature and Ionization of Unshocked Ejecta in Cas A
- Nuclear de-excitation line spectrum of Cassiopeia A
- Detection of the Red Supergiant Wind from the Progenitor of Cassiopeia A
- Probing the Innermost Ejecta Layers in SNR Kes 75: Implications for the Supernova Progenitor
- Near-infrared Extinction due to Cool Supernova Dust in Cassiopeia A
- Properties of shocked dust grains in supernova remnants
- The Cold Dust Content of the Oxygen-Rich Supernova Remnant G292.0+1.8
- New estimation of the nuclear de-excitation line emission from the supernova remnant Cassiopeia A
- Fast Blast Wave and Ejecta in the Young Core-Collapse Supernova Remnant MSH 15-52/RCW 89
- A Spectroscopic Study of Supernova Remnants with the Infrared Space Observatory
- SNR G292.0+1.8: A Remnant of a Low-Mass Progenitor Stripped-Envelope Supernova