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A hot and fast ultra-stripped supernova that likely formed a compact neutron star binary

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TLDR
The discovery of iPTF 14gqr is interpreted as evidence for ultra-stripped supernovae that form neutron stars in compact binary systems.
Abstract
Compact neutron star binary systems are produced from binary massive stars through stellar evolution involving up to two supernova explosions. The final stages in the formation of these systems have not been directly observed. We report the discovery of iPTF 14gqr (SN 2014ft), a type Ic supernova with a fast-evolving light curve indicating an extremely low ejecta mass (≈0.2 solar masses) and low kinetic energy (≈2 × 1050 ergs). Early photometry and spectroscopy reveal evidence of shock cooling of an extended helium-rich envelope, likely ejected in an intense pre-explosion mass-loss episode of the progenitor. Taken together, we interpret iPTF 14gqr as evidence for ultra-stripped supernovae that form neutron stars in compact binary systems.

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The Radio and X-Ray-Luminous Type Ibc Supernova 2003L

TL;DR: In this article, the authors present extensive radio observations of SN 2003L, the most luminous and energetic Type Ibc radio supernova with the exception of SN 1998bw (associated with GRB 980425), and show that free-free absorption does not contribute significantly to the radio spectrum, since it implies ejecta velocities that are inconsistent with size constraints derived from very long baseline Array observations.
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Neutrino-driven explosions of ultra-stripped Type Ic supernovae generating binary neutron stars

TL;DR: In this article, the authors studied the explosion characteristics of ultra-stripped supernovae (SNe), which are candidates of SNe generating binary neutron stars (NSs), and found that the ultrastripped SN is a candidate for producing the secondary low-mass NS in the observed compact binary NSs like PSR J0737-3039.
Journal ArticleDOI

Inferring supernova IIb/Ib/Ic ejecta properties from light curves and spectra: correlations from radiative-transfer models

TL;DR: In this article, a 1D non-local-Thermodynamic-equilibrium time-dependent radiative transfer simulations for a large grid of supernovae (SNe) IIb/Ib/ic that result from the terminal explosion of the mass donor in a close-binary system were presented.
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