Dynamics and observational signatures of core-collapse supernovae with central engines: hydrodynamics simulations with Monte Carlo post-processing
arXiv:2510.13741 · doi:10.1093/mnras/stag306
Abstract
A long-lived central engine embedded in expanding supernova ejecta can alter the dynamics and observational signatures of the event, producing an unusually luminous, energetic, and/or rapidly-evolving transient. We use two-dimensional hydrodynamics simulations to study the effect of a central energy source, varying the amount, rate, and isotropy of the energy deposition. We post-process the results with a time-dependent Monte Carlo radiation transport code to extract observational signatures. The engine excavates a bubble at the centre of the ejecta, which becomes Rayleigh-Taylor unstable. Sufficiently powerful engines are able to break through the edge of the bubble and accelerate, shred, and compositionally mix the entire ejecta. The breakout of the engine-driven wind occurs at distinct rupture points, and the outflowing high-velocity gas may eventually give rise to radio emission. The dynamical impact of the engine leads to faster rising optical light curves, with photon escape facilitated by the faster expansion of the ejecta and the opening of low-density channels. For models with strong engines, the spectra are initially hot and featureless, but later evolve to resemble those of broad-line Ic supernovae. Under certain conditions, line emission from ionized, low-velocity material near the centre of the ejecta may be able to escape and produce narrow emission similar to that seen in interacting supernovae. We discuss how variability in the engine energy reservoir and injection rate could give rise to a heterogeneous set of events spanning multiple observational classes, including the fast blue optical transients, broad-line Ic supernovae, and superluminous supernovae.
Submitted to MNRAS; v2: updated affiliations; v3: accepted to MNRAS
References in corpus (38)
- scikit-image: Image processing in Python
- Pulsational pair instability as an explanation for the most luminous supernovae
- Rapidly-Evolving and Luminous Transients from Pan-STARRS1
- The magnetar model for Type I superluminous supernovae I: Bayesian analysis of the full multicolour light curve sample with MOSFiT
- Secondary Maximum in the Near-Infrared Lightcurves of Type Ia Supernovae
- The Unique Type Ib Supernova 2005bf at Nebular Phases: A Possible Birth Event of A Strongly Magnetized Neutron Star
- A Dynamical Model for the Evolution of a Pulsar Wind Nebula inside a Non-Radiative Supernova Remnant
- Hydrogen-Poor Superluminous Supernovae from the Pan-STARRS1 Medium Deep Survey
- A Diversity of Wave-driven Pre-supernova Outbursts
- Radii and Mass-loss Rates of Type IIb Supernova Progenitors
- iPTF16asu: A Luminous, Rapidly-Evolving, and High-Velocity Supernova
- Supernova ejecta with a relativistic wind from a central compact object: a unified picture for extraordinary supernovae
- Luminous Millimeter, Radio, and X-ray Emission from ZTF20acigmel (AT2020xnd)
- The Hydrogen-Poor Superluminous Supernovae from the Zwicky Transient Facility Phase-I Survey: II. Light Curve Modeling and Characterization of Undulations
- Bumpy Declining Light Curves Are Common in Hydrogen-poor Superluminous Supernovae
- A Planar Jitternig-Jets Pattern in Core-Collapse Supernova Explosions
- Superluminous supernovae: an explosive decade
- Extreme mass loss in low-mass type Ib/c supernova progenitors
- 2D radiation-hydrodynamic simulations of supernova ejecta with a central power source
- Wave-driven outbursts and variability of low-mass supernova progenitors
- Pulsar Wind Bubble Blowout from a Supernova
- Magnetar Engines in Fast Blue Optical Transients and Their Connections with SLSNe, SNe Ic-BL, and lGRBs
- Numerical simulations of the random angular momentum in convection II: delayed explosions of red supergiants following "failed'' supernovae
- Variable thermal energy injection from magnetar spin down as a possible cause of stripped-envelope supernova light-curve bumps
- Magnetar-Powered Supernovae in Two Dimensions. II. Broad-Line Supernovae Ic
- A Generalized Semi-Analytic Model for Magnetar-Driven Supernovae
- A systematic study on the rise time-peak luminosity relation for bright optical transients powered by wind shock breakout
- Photospheric Velocity Gradients and Ejecta Masses of Hydrogen-poor Superluminous Supernovae -- Proxies for Distinguishing between Fast and Slow Events
- Chemical stratification in a long gamma-ray burst cocoon and early-time spectral signatures of supernovae associated with gamma-ray bursts
- Extended Self-similar Solution for Circumstellar Material-Supernova Ejecta Interaction
- Extremely energetic supernova explosions embedded in a massive circumstellar medium: the case of SN 2016aps
- Pre-maximum spectroscopic diversity of hydrogen-poor superluminous supernovae
- Physics of Superluminous Supernovae
- The Type I Superluminous Supernova Catalogue II: Spectroscopic Evolution in the Photospheric Phase, Velocity Measurements, and Constraints on Diversity
- Multi-Peaked Non-Thermal Light Curves from Magnetar-Powered Gamma-Ray Bursts
- Gamma-Ray Burst Jets in Circumstellar Material: Dynamics, Breakout, and Diversity of Transients
- Stellar Tidal Disruptions by Newborn Neutron Stars or Black Holes: A Mechanism for Hydrogen-poor (Super)luminous Supernovae and Fast Blue Optical Transients
- The Most Luminous Known Fast Blue Optical Transient AT 2024wpp: Unprecedented Evolution and Properties in the Ultraviolet to the Near-Infrared