Polarisation spectral synthesis for Type Ia supernova explosion models
arXiv:1503.07002 · doi:10.1093/mnras/stv657
Abstract
We present a Monte Carlo radiative transfer technique for calculating synthetic spectropolarimetry for multi-dimensional supernova explosion models. The approach utilises "virtual-packets" that are generated during the propagation of the Monte Carlo quanta and used to compute synthetic observables for specific observer orientations. Compared to extracting synthetic observables by direct binning of emergent Monte Carlo quanta, this virtual-packet approach leads to a substantial reduction in the Monte Carlo noise. This is vital for calculating synthetic spectropolarimetry (since the degree of polarisation is typically very small) but also useful for calculations of light curves and spectra. We first validate our approach via application of an idealised test code to simple geometries. We then describe its implementation in the Monte Carlo radiative transfer code ARTIS and present test calculations for simple models for Type Ia supernovae. Specifically, we use the well-known one-dimensional W7 model to verify that our scheme can accurately recover zero polarisation from a spherical model, and to demonstrate the reduction in Monte Carlo noise compared to a simple packet-binning approach. To investigate the impact of aspherical ejecta on the polarisation spectra, we then use ARTIS to calculate synthetic observables for prolate and oblate ellipsoidal models with Type Ia supernova compositions.
16 pages, 17 figures, 1 table, accepted for publication in MNRAS
References in corpus (9)
- Double-detonation sub-Chandrasekhar supernovae: can minimum helium shell masses detonate the core?
- Spectropolarimetry of Supernovae
- Time Dependent Monte Carlo Radiative Transfer Calculations For 3-Dimensional Supernova Spectra, Lightcurves, and Polarization
- Double-detonation supernovae of sub-Chandrasekhar mass white dwarfs
- Unstable Helium Shell Burning on Accreting White Dwarfs
- Multi-dimensional simulations of radiative transfer in Type Ia supernovae
- Radiation Transport for Explosive Outflows: Opacity Regrouping
- Spiral Disk Instability Can Drive Thermonuclear Explosions in Binary White Dwarf Mergers
- Theoretical light curves of type Ia supernovae
Cited by in corpus (5)
- Spectropolarimetry of superluminous supernovae: insight into their geometry
- Predicting polarization signatures for double-detonation and delayed-detonation models of Type Ia supernovae
- Time-resolved polarimetry of the superluminous SN 2015bn with the Nordic Optical Telescope
- Three-Dimensional Explosion Geometry of Stripped-Envelope Core-Collapse Supernovae. II. Modelling of Polarization
- Multi-epoch Spectropolarimetry of SN 2011fe