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Related papers: Uncertainties in s-process nucleosynthesis in mass…

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Using a new s-nucleosynthesis code, coupled with the stellar evolution code Star2003, we performed simulations to study the impact of the convection treatment on the s-process during core He-burning of a 25 Msun star (ZAMS mass) with an…

Astrophysics · Physics 2009-07-13 Vincenzo Costa , Maria Letizia Pumo , Alfio Bonanno , Rosario Aldo Zappala'

In order to get a broader view of the s-process nucleosynthesis we study the abundance distribution of heavy elements of 35 barium stars and 24 CEMP-stars, including nine CEMP-s stars and 15 CEMP-r/s stars. The similar distribution of…

Solar and Stellar Astrophysics · Physics 2013-05-09 Wenyuan Cui , Jianrong Shi , Yuanyuan Geng , Caixia Zhang , Xiaoying Meng , Lang Shao , Bo Zhang

The production of about half of the heavy elements found in nature is assigned to a specific astrophysical nucleosynthesis process: the rapid neutron capture process (r-process). Although this idea has been postulated more than six decades…

During the late stages of massive stellar evolution, failed supernovae (FSN) may form through core-collapse processes. The traditional evaluation criterion $\xi_{2.5}$ $=$ 0.45, primarily established using non-rotating progenitor models,…

Solar and Stellar Astrophysics · Physics 2026-01-14 Renyu Luo , Chunhua Zhu , Guoliang Lü , Helei Liu , Sufen Guo , Lei Li , Zhuowen Li

Context. Monte Carlo methods have enabled nuclear reaction rates from uncertain inputs to be presented in a statistically meaningful manner. However, these uncertainties are currently computed assuming no correlations between the physical…

Instrumentation and Methods for Astrophysics · Physics 2017-08-02 Richard Longland

Uncertainties in nuclear models have a major impact on simulations that aim at understanding the origin of heavy elements in the universe through the rapid neutron capture process ($r$ process) of nucleosynthesis. Within the framework of…

Nuclear Theory · Physics 2020-05-20 T. M. Sprouse , R. Navarro Perez , R. Surman , M. R. Mumpower , G. C. McLaughlin , N. Schunck

One of the largest uncertainties in stellar evolutionary computations is the accuracy of the considered reaction rates. The 12C(alpha,gamma)16O reaction is particularly important for the study of low- and intermediate-mass stars as it…

Solar and Stellar Astrophysics · Physics 2022-04-20 Ben T. Pepper , A. G. Istrate , A. D. Romero , S. O. Kepler

Most of our current understanding of the planet formation mechanism is based on the planet metallicity correlation derived mostly from solar-type stars harbouring gas-giant planets. To achieve a far more reaching grasp on the substellar…

Solar and Stellar Astrophysics · Physics 2019-04-17 J. Maldonado , E. Villaver , C. Eiroa , G. Micela

We calculate presupernova evolutions and supernova explosions of massive stars (M=13-25 Mo) for various metallicities. We find the following characteristic abundance patterns of nucleosynthesis in the metal-free (Pop III) stars. (1) The…

Astrophysics · Physics 2009-10-31 Hideyuki Umeda , Ken'ichi Nomoto , Takayoshi Nakamura

The origin of carbon-enhanced metal-poor (CEMP) stars plays a key role in characterising the formation and evolution of the first stars and the Galaxy since the extremely-poor (EMP) stars with [Fe/H] \leq -2.5 share the common features of…

Solar and Stellar Astrophysics · Physics 2017-03-29 Takuma Suda , Shimako Yamada , Masayuki Y. Fujimoto

Accurate relative abundances have been obtained for a sample of 21 mildly metal-poor stars from the analysis of high resolution and high signal-to-noise spectra. With these accurate results, correlations between relative abundances have…

Astrophysics · Physics 2007-05-23 E. Jehin , P. Magain , C. Neuforge , A. Noels , G. Parmentier , A. Thoul

We investigate the effects of neutrino-nucleus interactions (the nu-process) on the production of iron-peak elements in Population III core-collapse supernovae. The nu-process and the following proton and neutron capture reactions produce…

Astrophysics · Physics 2009-11-13 Takashi Yoshida , Hideyuki Umeda , Ken'ichi Nomoto

Nuclear astrophysics is a multi-disciplinary field with a huge demand for nuclear data. Among its various fields, stellar evolution and nucleosynthesis are clearly the most closely related to nuclear physics. The need for nuclear data for…

Nuclear Theory · Physics 2022-12-06 S. Goriely , A. Choplin , W. Ryssens , I. Kullmann

The slow ($s$) and intermediate ($i$) neutron ($n$) capture processes occur both in asymptotic giant branch (AGB) stars, and in massive stars. To study the build-up of the $s$- and $i$-products at low metallicity, we investigate the…

A sample of 895 s-process-rich candidates has been found among the 454180 giant stars surveyed by LAMOST at low spectral resolution (R~1800). In a previous study, taking advantage of the higher resolution (R~86 000) offered by the the…

Solar and Stellar Astrophysics · Physics 2023-09-06 D. Karinkuzhi , S. Van Eck , S. Goriely , L. Siess , A. Jorissen , A. Choplin , A. Escorza , S. Shetye , H. Van Winckel , .

We propose an explanation for the considerable scatter of the abundances of neutron capture elements observed in low-metallicity stars in the solar vicinity, compared to the small star-to-star scatter observed for the alpha-elements. We…

Astrophysics · Physics 2009-11-13 G. Cescutti

Asymptotic giant branch (AGB) stars with low initial mass (1 - 3 Msun) are responsible for the production of neutron-capture elements through the main s-process (main slow neutron capture process). The major neutron source is 13C(alpha,…

Solar and Stellar Astrophysics · Physics 2022-10-26 S. Bisterzo , R. Gallino , F. Kaeppeler , M. Wiescher , C. Travaglio

Some recent observations of the abundances of s-process, r-process, and alpha elements in metal-poor stars have led to a new scenario for their formation. According to this scenario, these stars were born in a globular cluster and accreted…

Astrophysics · Physics 2009-11-07 A. Thoul , A. Jorissen , S. Goriely , E. Jehin , P. Magain , A. Noels , G. Parmentier

About half of the heavy elements beyond iron are known to be produced by the rapid neutron capture process, known as r-process. However, the astrophysical site producing the r-process is still uncertain. Chemical abundances observed in…

The CH star CS 31062-050 ([Fe/H]=-2.42) is one of the most useful stars yet discovered for evaluating the s-process in metal-poor stars. It is very abundant in heavy elements (e.g., [La/Fe]=2.2), and its relatively cool temperature and low…

Astrophysics · Physics 2009-11-10 Jennifer A. Johnson , Michael Bolte
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