Probing the Innermost Ejecta Layers in SNR Kes 75: Implications for the Supernova Progenitor
arXiv:1905.02849 · doi:10.3847/2041-8213/ab237c
Abstract
Supernova remnants (SNRs) that contain pulsar wind nebulae (PWNe) are characterized by distinct evolutionary stages. In very young systems, the PWN drives a shock into the innermost supernova (SN) material, giving rise to low-excitation lines and an infrared (IR) continuum from heated dust grains. These observational signatures make it possible to cleanly measure the properties of the deepest SN ejecta layers that can, in turn, provide constraints on the SN progenitor. We present Herschel Space Observatory far-IR observations of the PWN in the Galactic SNR Kes 75, containing the youngest known pulsar that exhibited magnetar-like activity. We detect highly-broadened oxygen and carbon line emission that arises from the SN ejecta encountered by the PWN. We also detect a small amount (a few thousandths of a solar mass) of shock-heated dust that spatially coincides with the ejecta material and was likely formed in the SN explosion. We use hydrodynamical models to simulate the evolution of Kes 75 and find that the PWN has so far swept up 0.05-0.1 solar masses of SN ejecta. Using explosion and nucleosynthesis models for different progenitor masses in combination with shock models, we compare the predicted far-IR emission with the observed line intensities and find that lower mass and explosion energy SN progenitors with mildly mixed ejecta profiles and comparable abundance fractions of carbon and oxygen are favored over higher mass ones. We conclude that Kes 75 likely resulted from an 8-12 solar-mass progenitor, providing further evidence that lower energy explosions of such progenitors can give rise to magnetars.
14 pages, 10 figures, 6 tables, submitted to ApJ
References in corpus (17)
- The Cassiopeia A Supernova was of Type IIB
- Magnetar-like Emission from the Young Pulsar in Kes 75
- On Pulsar Distance Measurements and their Uncertainties
- Tycho Brahe's 1572 supernova as a standard type Ia explosion revealed from its light echo spectrum
- A Dynamical Model for the Evolution of a Pulsar Wind Nebula inside a Non-Radiative Supernova Remnant
- Supernova remnant energetics and magnetars: no evidence in favour of millisecond proto-neutron stars
- Discriminating the Progenitor Type of Supernova Remnants with Iron K-Shell Emission
- An upper limit to the energy of gamma-ray bursts indicates that GRB/SNe are powered by magnetars
- Spectral Identification of an Ancient Supernova using Light Echoes in the LMC
- The Distance of the SNR Kes 75 and PWN PSR J1846-0258 System
- A Massive Shell of Supernova-formed Dust in SNR G54.1+0.3
- Ejecta, Dust, and Synchrotron Radiation in B0540-69.3: A More Crab-Like Remnant than the Crab
- Are Models for Core-Collapse Supernova Progenitors Consistent with the Properties of Supernova Remnants?
- Constraints on explosive silicon burning in core-collapse supernovae from measured Ni/Fe ratios
- Evolution of a Pulsar Wind Nebula within a Composite Supernova Remnant
- Observations of X-rays and Thermal Dust Emission from the Supernova Remnant Kes 75
- Expansion of Kes 73, a Shell Supernova Remnant Containing a Magnetar