Evidence for a Black Hole Remnant in the Type IIL Supernova 1979C
arXiv:0912.1571 · doi:10.1016/j.newast.2010.09.004
Abstract
We present an analysis of archival X-ray observations of the Type IIL supernova SN 1979C. We find that its X-ray luminosity is remarkably constant at (6.5+/-0.1) x 10^38 erg/s over a period of 12 years between 1995 and 2007. The high and steady luminosity is considered as possible evidence for a stellar-mass (~ 5-10Msun) black hole accreting material from either a supernova fallback disk or from a binary companion, or possibly from emission from a central pulsar wind nebula. We find that the bright and steady X-ray light curve is not consistent with either a model for a supernova powered by magnetic braking of a rapidly rotating magnetar, or a model where the blast wave is expanding into a dense circumstellar wind.
11 pages, 2 figures, to appear in New Astronomy
References in corpus (11)
- Progenitors of core-collapse supernovae
- Supernova Light Curves Powered by Young Magnetars
- Bright Supernovae from Magnetar Birth
- A Debris Disk Around An Isolated Young Neutron Star
- Testing Accretion Disk Theory in Black Hole X-ray Binaries
- How rapidly do neutron stars spin at birth? Constraints from archival X-ray observations of extragalactic supernovae
- SN 1986J VLBI: II. The Evolution of the Shell and the Central Source
- The oldest X-ray supernovae: X-ray emission from 1941C, 1959D, 1968D
- Shell revealed in SN 1979C
- Measuring the Spins of Stellar Black Holes: A Progress Report
- 1.6 GHz VLBI Observations of SN 1979C: almost-free expansion
Cited by in corpus (22)
- Supernova Light Curves Powered by Fallback Accretion
- Panchromatic Observations of SN 2011dh Point to a Compact Progenitor Star
- What are Published X-ray lightcurves telling us about Young Supernova Expansion?
- Late-Time Optical Emission From Core-Collapse Supernovae
- Explosions Driven by the Coalescence of a Compact Object with the Core of a Massive-Star Companion Inside a Common Envelope: Circumstellar Properties, Light Curves, and Population Statistics
- SGRs and AXPs as rotation powered massive white dwarfs
- Direct evidence for a supernova interacting with a large amount of hydrogen-free circumstellar material
- Gravitational Waves from Fallback Accretion onto Neutron Stars
- Recovery of the Historical SN1957D in X-rays with Chandra
- Dust masses for a large sample of core-collapse supernovae from optical emission line asymmetries: dust formation on 30-year timescales
- The Supernova -- Supernova Remnant Connection
- On extreme transient events from rotating black holes and their gravitational wave emission
- The Impact of Progenitor Mass Loss on the Dynamical and Spectral Evolution of Supernova Remnants
- Prospects for multi-messenger extended emission from core-collapse supernovae in the Local Universe
- SN 1986J VLBI. IV. The Nature of the Central Component
- X-Ray Luminous Supernovae: Threats to Terrestrial Biospheres
- Cooling of young neutron stars in GRB associated to Supernova
- A Mid-life crisis? Sudden Changes in Radio and X-Ray Emission from Supernova 1970G
- Detection of Late-Time Optical Emission from SN 1941C in NGC 4136
- The Signature of a Windy Radio Supernova Progenitor in a Binary System
- Discovery of young, oxygen-rich supernova remnants in PHANGS-MUSE galaxies
- Global embeddings and hydrodynamic properties of Kerr black hole