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Related papers: Gamma-Ray emission from SN2014J near maximum optic…

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Type Ia supernovae are thought to be the outcome of the thermonuclear explosion of a carbon/oxygen white dwarf in a close binary system. Their optical light curve is powered by thermalized gamma-rays produced by the radioactive decay of…

High Energy Astrophysical Phenomena · Physics 2017-06-21 J. Isern , E. Bravo , P. Jean , J. Knödlseder

Type Ia supernovae are thought to be the outcome of the thermonuclear explosion of a carbon/oxygen white dwarf in a close binary system. Their optical light curve is powered by thermalized gamma-rays produced by the radioactive decay of…

Astrophysics of Galaxies · Physics 2017-09-11 J. Isern , E. Bravo , P. Jean

On 21 January 2014, SN2014J was discovered in M82 and found to be the closest type Ia supernova (SN Ia) in the last four decades. INTEGRAL observed SN2014J from the end of January until late June for a total exposure time of about 7 Ms. SNe…

High Energy Astrophysical Phenomena · Physics 2015-01-26 Thomas Siegert , Roland Diehl

The measurement of gamma-ray lines from the decay chain of 56Ni provides unique information about the explosion in supernovae. The 56Ni freshly-produced in the supernova powers the optical light curve, as it emits gamma-rays upon its…

SN2014J is the closest supernova of type Ia that occured in the last 40 years. This provides an opportunity for unprecedented observational detail and coverage in many astronomical bands, which will help to better understand the still…

High Energy Astrophysical Phenomena · Physics 2015-08-11 Roland Diehl

Besides the fact that the gamma-ray emission due to radioactive decays is responsible for powering the light curves of Type Ia supernovae (SNe Ia), gamma rays themselves are of particular interest as a diagnostic tool because they provide a…

The hard X-ray continuum and gamma-ray lines from a Type Ia supernova dominate its integrated photon emissions and can provide unique diagnostics of the mass of the ejecta, the $^{56}$Ni yield and spatial distribution, its kinetic energy…

High Energy Astrophysical Phenomena · Physics 2015-06-18 Lih-Sin The , Adam Burrows

A type Ia supernova is thought to be a thermonuclear explosion of either a single carbon-oxygen white dwarf or of a pair of merging white dwarfs. The explosion fuses a large amount of radioactive 56Ni. After the explosion, the decay chain…

High Energy Astrophysical Phenomena · Physics 2017-06-14 E. Churazov , R. Sunyaev , J. Isern , J. Knödlseder , P. Jean , F. Lebrun , N. Chugai , S. Grebenev , E. Bravo , S. Sazonov , M. Renaud

The light curves of Type Ia Supernovae (SN Ia) are powered by gamma-rays emitted by the decay of radioactive elements such as $^{56}$Ni and its decay products. These gamma-rays are downscattered,absorbed, and eventually reprocessed into the…

Type-Ia supernovae result from binary systems that include a carbon-oxygen white dwarf, and these thermonuclear explosions typically produce 0.5 M_solar of radioactive 56Ni. The 56Ni is commonly believed to be buried deeply in the expanding…

A Milky-Way Type Ia Supernova (SNIa) could be unidentified or even initially unnoticed, being dim in radio, X-rays, and neutrinos, and suffering large optical/IR extinction in the Galactic plane. But SNIa emit nuclear gamma-ray lines from…

High Energy Astrophysical Phenomena · Physics 2019-04-17 Xilu Wang , Brian D. Fields , Amy Yarleen Lien

We perform multi-dimensional, time-dependent radiation transfer simulations for hard X-ray and gamma-ray emissions, following radioactive decays of 56Ni and 56Co, for two-dimensional delayed detonation models of Type Ia supernovae (SNe Ia).…

High Energy Astrophysical Phenomena · Physics 2015-06-11 K. Maeda , Y. Terada , D. Kasen , F. K. Roepke , A. Bamba , R. Diehl , K. Nomoto , M. Kromer , I. R. Seitenzahl , H. Yamaguchi , T. Tamagawa , W. Hillebrandt

The explosion mechanism associated with thermonuclear supernovae (SNIa) is still a matter of debate. There is a wide agreement that high amounts of of radioactive nuclei are produced during these events and they are expected to be strong…

Astrophysics · Physics 2009-10-30 Jordi Gomez-Gomar , Jordi Isern , Pierre Jean

Detection of gamma-rays emitted by radioactive isotopes synthesized in stellar explosions can give important insights into the processes that power transients such as supernovae, as well as providing a detailed census of the abundance of…

High Energy Astrophysical Phenomena · Physics 2021-09-29 Fiona H. Panther , Ivo R. Seitenzahl , Ashley J. Ruiter , Thomas Siegert , Stuart Sim , Roland M. Crocker

Gamma ray lines are expected to be emitted as part of the afterglow of supernova explosions, because radioactive decay of freshly synthesised nuclei occurs. Significant radioactive gamma ray line emission is expected from 56Ni and 44Ti…

High Energy Astrophysical Phenomena · Physics 2017-10-25 Roland Diehl

SN2011fe was detected by the Palomar Transient Factory on August 24th 2011 in M101 a few hours after the explosion. From the early optical spectra it was immediately realized that it was a Type Ia supernova thus making this event the…

We illustrate methods for deriving properties of thermonuclear, or Type Ia, supernovae, including synthesized $^{56}$Ni mass, total ejecta mass, ejecta kinetic energy, and $^{56}$Ni distribution in velocity, from gamma-ray line…

High Energy Astrophysical Phenomena · Physics 2022-06-22 Mark D. Leising

In this review I discuss the various gamma-ray emission lines that are expected and have been observed from radioactive explosive nucleosynthesis products. The most important gamma-ray lines result from the decay chains of Ni-56, Ni-57, and…

Astrophysics · Physics 2009-11-10 Jacco Vink

The whole set of INTEGRAL observations of type Ia supernova SN2014J, covering the period 19-162 days after the explosion has being analyzed. For spectral fitting the data are split into "early" and "late" periods covering days 19-35 and…

High Energy Astrophysical Phenomena · Physics 2015-10-14 E. Churazov , R. Sunyaev , J. Isern , I. Bikmaev , E. Bravo , N. Chugai , S. Grebenev , P. Jean , J. Knödlseder , F. Lebrun , E. Kuulkers

We investigate two potential mechanisms that will produce X-ray and gamma-ray flashes from Type Ia supernovae (SN-Ia). The mechanisms are the breakout of the thermonuclear burning front as it reaches the surface of the white dwarf and the…

High Energy Astrophysical Phenomena · Physics 2015-05-14 Peter Hoflich , Bradley E. Schaefer
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