Late-time Observations of Calcium-Rich Transient SN 2019ehk Reveal a Pure Radioactive Decay Power Source
arXiv:2010.15863 · doi:10.3847/2041-8213/abdebc
Abstract
We present imaging of the Calcium-rich supernova (SN) 2019ehk at 276 - 389 days after explosion. These observations represent the latest photometric measurements of a Calcium-rich transient to date and allows for the first opportunity to analyze the late-time evolution of an object in this observational SN class. We find that the late-time bolometric light curve of SN 2019ehk can be described predominantly through the radioactive decay of for which we derive a mass of . Furthermore, the rate of decline in bolometric luminosity requires the leakage of -rays on timescale days, but we find no statistical evidence for incomplete positron trapping in the SN ejecta. While our observations cannot constrain the exact masses of other radioactive isotopes synthesized in SN 2019ehk, we estimate a mass ratio limit of . This limit is consistent with the explosive nucleosynthesis produced in the merger of low-mass white dwarfs, which is one of the favored progenitor scenarios in early-time studies of SN 2019ehk.
16 pages, 4 figures. Accepted for publication in ApJL
References in corpus (19)
- The Broad-lined Type Ic SN 2003jd
- The carbon-rich type Ic SN 2007gr: the photospheric phase
- Analysis of Late--time Light Curves of Type IIb, Ib and Ic Supernovae
- The evolution of the peculiar Type Ia supernova SN 2005hk over 400 days
- Mass transfer in white dwarf-neutron star binaries
- Illuminating Massive Black Holes With White Dwarfs: Orbital Dynamics and High Energy Transients from Tidal Interactions
- Atypical Thermonuclear Supernovae from Tidally Crushed White Dwarfs
- The light curve of SN 1987A revisited: constraining production masses of radioactive nuclides
- Two New Calcium-Rich Gap Transients in Group and Cluster Environments
- SN 2019ehk: A Double-Peaked Ca-rich Transient with Luminous X-ray Emission and Shock-Ionized Spectral Features
- Wait for it: Post-supernova winds driven by delayed radioactive decays
- The Optical/Near-Infrared Light Curves of SN 2002ap for the First 1.5 Years after Discovery
- The progenitors of calcium-rich transients are not formed in situ
- Calcium-Rich Gap Transients: Tidal Detonations of White Dwarfs?
- Optical observations of the fast declining type Ib supernova iPTF13bvn
- iPTF15eqv: Multi-wavelength Exposé of a Peculiar Calcium-rich Transient
- Explosive nucleosynthesis of ultra-stripped Type Ic supernovae: application to light trans-iron elements
- The peculiar Ca-rich SN 2019ehk: Evidence for a Type IIb core-collapse supernova from a low mass stripped progenitor
- Radio Emission from Ultra-stripped Supernovae as Diagnostics for Properties of the Remnant Double Neutron Star Binaries
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- The origins of Calcium-rich supernovae from disruptions of CO white-dwarfs by hybrid He-CO white-dwarfs
- The Circumstellar Environments of Double-Peaked, Calcium-strong Supernovae 2021gno and 2021inl
- No velocity-kicks are required to explain large-distance offsets of Ca-rich supernovae and short-GRBs
- Radio Analysis of SN 2004C Reveals an Unusual CSM Density Profile as a Harbinger of Core Collapse
- Supernovae double-peaked light curves from double-nickel distribution
- Spatially Resolved X-ray Study of Supernova Remnant G306.30.9 with Unusually High Calcium Abundance
- Physical Properties of the Host Galaxies of Ca-rich Transients
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- Characterizing the host galaxies and delay times of Ca-rich gap transients vs 91bg-like SNe and normal Type Ia SNe