Super-luminous X-ray Emission from the Interaction of Supernova Ejecta with Dense Circumstellar Shells
arXiv:1303.6958 · doi:10.1093/mnras/stt780
Abstract
For supernova powered by the conversion of kinetic energy into radiation due to the interactions of the ejecta with a dense circumstellar shell, we show that there could be X-ray analogues of optically super-luminous SNe with comparable luminosities and energetics. We consider X-ray emission from the forward shock of SNe ejecta colliding into an optically-thin CSM shell, derive simple expressions for the X-ray luminosity as a function of the circumstellar shell characteristics, and discuss the different regimes in which the shock will be radiative or adiabatic, and whether the emission will be dominated by free-free radiation or line-cooling. We find that even with normal supernova explosion energies of 10^51 erg, there exists CSM shell configurations that can liberate a large fraction of the explosion energy in X-rays, producing unabsorbed X-ray luminosities approaching 10^44 erg/s events lasting a few months, or even 10^45 erg/s flashes lasting days. Although the large column density of the circumstellar shell can absorb most of the flux from the initial shock, the most luminous events produce hard X-rays that are less susceptible to photoelectric absorption, and can counteract such losses by completely ionizing the intervening material. Regardless, once the shock traverses the entire circumstellar shell, the full luminosity could be available to observers.
Submitted to MNRAS. 12 pages, 4 figures
References in corpus (15)
- Pulsational pair instability as an explanation for the most luminous supernovae
- Luminous Supernovae
- Circumstellar Emission from Type Ib and Ic Supernovae
- The Unprecedented 2012 Outburst of SN 2009ip: A Luminous Blue Variable Becomes a True Supernova
- SN 2006jc: A Wolf-Rayet Star Exploding in a Dense He-Rich Circumstellar Medium
- SN 2006tf: Precursor Eruptions and the Optically Thick Regime of Extremely Luminous Type IIn Supernovae
- An outburst from a massive star 40 days before a supernova explosion
- Shell-shocked diffusion model for the light curve of SN2006gy
- Light Curve Modeling of Superluminous Supernova 2006gy: Collision between Supernova Ejecta and Dense Circumstellar Medium
- SN 1994W: An Interacting Supernova or Two Interacting Shells?
- Superluminous Light Curves from Supernovae Exploding in a Dense Wind
- Hydrogen-Poor Circumstellar Shells from Pulsational Pair-Instability Supernovae with Rapidly Rotating Progenitors
- Radio and X-ray observations of SN 2006jd: Another strongly interacting Type IIn supernova
- X-ray emission from supernovae in dense circumstellar matter environments: A search for collisionless shocks
- Supernova 1996cr: SN 1987A's Wild Cousin?
Cited by in corpus (18)
- Analytical Light Curve Models of Super-Luminous Supernovae: chi^2-Minimizations of Parameter Fits
- Ionization Break-Out from Millisecond Pulsar Wind Nebulae: an X-ray Probe of the Origin of Superluminous Supernovae
- Mass ejection by pulsational pair instability in very massive stars and implications for luminous 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
- Probing Cosmic-Ray Ion Acceleration with Radio-Submm and Gamma-Ray Emission from Interaction-Powered Supernovae
- On the Lack of X-ray Bright Type IIP Supernovae
- Superluminous X-rays from a superluminous supernova
- Pre-Common-Envelope Mass Loss from Coalescing Binary Systems
- Are Models for Core-Collapse Supernova Progenitors Consistent with the Properties of Supernova Remnants?
- Pulsations of red supergiant pair-instability supernova progenitors leading to extreme mass loss
- Optical to X-ray Signatures of Dense Circumstellar Interaction in Core-Collapse Supernovae
- Radio synchrotron emission from secondary electrons in interaction-powered supernovae
- Is the high-energy neutrino event IceCube-200530A associated with a hydrogen-rich superluminous supernova?
- State-of-the-Art Collapsar Jet Simulations Imply Undetectable Subphotospheric Neutrinos
- Transient High-energy Gamma-rays and Neutrinos from Nearby Type II Supernovae
- The Gamma-ray Afterglows of Tidal Disruption Events
- Multi-wavelength View of the Type IIn Zoo: Optical to X-ray Emission Model of Interaction-Powered Supernovae
- The bright, dusty aftermath of giant eruptions & H-rich supernovae. Late interaction of supernova shocks & dusty circumstellar shells