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

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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Three-dimensional simulations of neutrino-driven core-collapse supernovae from low-mass single and binary star progenitors

TL;DR: In this paper, a suite of seven 3D supernova simulations of non-rotating low-mass progenitors using multi-group neutrino transport is presented, where the mass outflow rate already exceeds the accretion rate onto the proto-neutron star and the mass and angular momentum of the compact remnant have closely approached their final value, barring the possibility of later fallback.
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The Explosion of Helium Stars Evolved With Mass Loss

TL;DR: In this paper, light curves, explosion energies, and remnant masses for a grid of supernovae resulting from massive helium stars that have been evolved including mass loss are calculated for a set of stars in interacting systems.
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Kilonova Luminosity Function Constraints based on Zwicky Transient Facility Searches for 13 Neutron Star Mergers

Mansi M. Kasliwal, +114 more
TL;DR: In this article, the authors present a systematic search for optical counterparts to 13 GW triggers involving at least one neutron star during LIGO/Virgo's third observing run (O3).
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Evidence for Late-stage Eruptive Mass Loss in the Progenitor to SN2018gep, a Broad-lined Ic Supernova: Pre-explosion Emission and a Rapidly Rising Luminous Transient

TL;DR: Ho et al. as discussed by the authors presented detailed observations of ZTF18abukavn (SN2018gep), which was discovered in high-cadence data from the Zwicky Transient Facility as a rapidly rising (1.4 ± 0.1 mag hr-1) and luminous (Mg, peak = -20 mag) transient.
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Journal ArticleDOI

A carbon–oxygen star as progenitor of the type Ic supernova 1994I

TL;DR: In this article, it was shown that the observed characteristics of SN1994I (in the nearby galaxy NGC5194), which has recently been classified as type Ic, are best understood on the basis of the second of the two alternatives above: that the progenitor was in a close binary system and lost its outer envelopes, leaving a C + O star (of mass ≈ 2 solar masses) which exploded when its iron core collapsed.
Journal ArticleDOI

The Effelsberg-Bonn H i Survey: Milky Way gas - First data release

TL;DR: The Effelsberg-Bonn H i Survey (EBHIS) as discussed by the authors is a new 21-cm survey performed with the 100m telescope at Eysenbach.
Journal ArticleDOI

THE SPECTRAL SN-GRB CONNECTION: SYSTEMATIC SPECTRAL COMPARISONS BETWEEN TYPE Ic SUPERNOVAE AND BROAD-LINED TYPE Ic SUPERNOVAE WITH AND WITHOUT GAMMA-RAY BURSTS

TL;DR: In this paper, the spectral properties of 17 Type Ic Supernovae (SNe Ic), 10 broadlined SNe Ic (SNE Ic-bl) without observed Gamma-Ray Bursts (GRBs) and 11 SNe IC-bl with GRBs (SN-GRBs), were investigated as a function of time in order to probe their explosion conditions and progenitors.
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