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Related papers: 26Al and 60Fe From Supernova Explosions

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We present theoretical mass estimates of $^{26}$Al and $^{60}$Fe throughout the Galaxy, performed with a numerical chemical evolution model including detailed nucleosynthesis prescriptions for stable and radioactive nuclides. We compared…

Astrophysics of Galaxies · Physics 2022-11-09 A. Vasini , F. Matteucci , E. Spitoni

The isotopes $^{60}$Fe and $^{26}$Al originate from massive stars and their supernovae, reflecting ongoing nucleosynthesis in the Galaxy. We studied the gamma-ray emission from these isotopes at characteristic energies 1173, 1332, and 1809…

High Energy Astrophysical Phenomena · Physics 2020-02-12 W. Wang , T. Siegert , Z. G. Dai , R. Diehl , J. Greiner , A. Heger , M. Krause , M. Lang , M. M. M. Pleintinger , X. L. Zhang

Gamma-ray line emission from radioactive decay of 60Fe provides constraints on nucleosynthesis in massive stars and supernovae. We detect the gamma-ray lines from 60Fe decay at 1173 and 1333 keV using three years of data from the…

Solar and Stellar Astrophysics · Physics 2017-04-26 W. Wang

Gamma-rays from radioactive 26Al (half life ~7.2 10^5 yr) provide a 'snapshot' view of ongoing nucleosynthesis in the Galaxy. The Galaxy is relatively transparent to such gamma-rays, and emission has been found concentrated along the plane…

Gamma-rays from the decay of $^{26}$Al offer a stringent constraint on the Galaxy's global star formation rate over the past million years, supplementing other methods for quantifying the recent Galactic star formation rate, such as…

Astrophysics · Physics 2009-10-30 F. X. Timmes , R. Diehl , D. H. Hartmann

Massive stars are a major source of chemical elements in the cosmos, ejecting freshly produced nuclei through winds and core-collapse supernova explosions into the interstellar medium. Among the material ejected, long lived radioisotopes,…

The nucleosynthesis and ejection of radioactive $^{26}$Al (t$_{1/2} \sim$ 0.72\,Myr) and $^{60}$Fe, (t$_{1/2} \sim$ 2.5\,Myr) into the interstellar medium is dominated by the stellar winds of massive stars and supernova type II explosions.…

Earth and Planetary Astrophysics · Physics 2015-06-12 Aristodimos Vasileiadis , Aake Nordlund , Martin Bizzarro

We investigate $^{60}$Fe in massive stars and core-collapse supernovae focussing on uncertainties that influence its production in 15, 20 and 25 $M_\odot$ stars at solar metallicity. We find that the $^{60}$Fe yield is a monotonic…

With the SPI high-resolution spectrometer on INTEGRAL, new results have been obtained for long-lived radioactive 26Al and 60Fe in our Galaxy: 26Al sources apparently share the pattern of Galactic rotation in the inner Galaxy, and thus allow…

Astrophysics · Physics 2009-11-11 Roland Diehl

The diffuse $\gamma$-ray emission from short-lived radioactive $^{26}$Al and $^{60}$Fe provides a direct probe of ongoing nucleosynthesis in the Galaxy. However, theoretical models have long struggled to reproduce the observed…

High Energy Astrophysical Phenomena · Physics 2026-05-29 Bingyang Tan , Wenyu Xin , Ruizheng Jiang , Gang Zhao , Koh Takahashi

Recent observations of the diffuse Galactic gamma-ray glow at 1.809 MeV, attributed to the radioactive decay of 26Al, point towards a massive star origin of this radioactive isotope. Wolf Rayet stars and core-collapse supernovae appear to…

Astrophysics · Physics 2007-05-23 S. Plueschke , R. Diehl , D. H. Hartmann , U. G. Oberlack

The observation of the interstellar 1.809 MeV decay-line of radioactive 26Al by the imaging gamma-ray telescope COMPTEL have let to the conclusion, that massive stars and their subsequent core-collapse supernovae are the dominant sources of…

Astrophysics · Physics 2015-05-20 S. Plueschke , R. Diehl , K. Kretschmer , D. H. Hartmann , U. Oberlack

Deep-sea archives that include intermediate-lived radioactive $^{60}\mathrm{Fe}$ particles suggest the occurrence of several recent supernovae inside the present-day volume of the Local Bubble during the last $\sim 10$ Myr. The isotope…

High Energy Astrophysical Phenomena · Physics 2024-08-28 Thomas Siegert , Michael M. Schulreich , Niklas Bauer , Rudi Reinhardt , Saurabh Mittal , Hiroki Yoneda

Short-lived radionuclides, such as 26Al and 60Fe, are tracers of star formation. Therefore, their abundances can unravel the recent star formation history of the host galaxy. In view of future gamma-ray surveys, we predict the masses and…

Astrophysics of Galaxies · Physics 2023-05-24 Arianna Vasini , Francesca Matteucci , Emanuele Spitoni , Thomas Siegert

The unstable isotope $^{60}$Fe, with a half-life of 2.6 million years, is produced primarily in supernova explosions. The observed presence of $^{60}$Fe in cosmic rays and its detection in deep-sea crusts and sediments suggest two possible…

High Energy Astrophysical Phenomena · Physics 2025-07-01 Xin-Yue Shi , Martin Pohl , Michael M. Schulreich

The COMPTEL map of the 1.809 MeV gamma-ray line, which is attributed to the radioactive decay of 26Al, shows significant excess emission in the Cygnus region. Cygnus is a region of recent star formation activity, which is rich in massive,…

Astrophysics · Physics 2007-05-23 S. Plueschke , K. Kretschmer , R. Diehl , D. H. Hartmann , U. Oberlack

Radioactive nuclei were present in the early Solar System, as inferred from analysis of meteorites. Many are produced in massive stars, either during their lives or their final explosions. In the first paper in this series (Brinkman et al.…

Solar and Stellar Astrophysics · Physics 2022-01-19 Hannah E. Brinkman , J. W. den Hartogh , C. L. Doherty , M. Pignatari , M. Lugaro

We have used effective reaction rates (ERR) for the helium burning reactions to predict the yield of the gamma-emitting nuclei 26Al, 44Ti, and 60Fe in core col- lapse supernovae. The variations in the predicted yields for values of the…

Solar and Stellar Astrophysics · Physics 2017-04-20 Sam Austin , Christopher West , Alexander Heger

We have studied the sensitivity to variations in the the triple alpha and 12C(a,g)16O reaction rates of the production of 26Al, 44Ti, and 60Fe in core-collapse supernovae. We used the KEPLER code to model the evolution of 15, 20, and 25…

Solar and Stellar Astrophysics · Physics 2014-11-20 Clarisse Tur , Alexander Heger , Sam M. Austin

The cosmic evolution of the chemical elements from the Big Bang to the present time is driven by nuclear fusion reactions inside stars and stellar explosions. A cycle of matter recurrently re-processes metal-enriched stellar ejecta into the…

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