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To better characterize the abundance patterns produced by the r-process, we have derived new abundances or upper limits for the heavy elements zinc (Zn), yttrium (Y), lanthanum (La), europium (Eu), and lead (Pb). Our sample of 161…

Solar and Stellar Astrophysics · Physics 2015-05-20 I. U. Roederer , J. J. Cowan , A. I. Karakas , K. -L. Kratz , M. Lugaro , J. Simmerer , K. Farouqi , C. Sneden

Any simulation of the r-process is affected by uncertainties in our present knowledge of nuclear physics quantities and astrophysical conditions. It is common to quantify the impact of these uncertainties through a global sensitivity…

High Energy Astrophysical Phenomena · Physics 2017-05-02 Zachary Shand , Rachid Ouyed , Nico Koning , Iris Dillmann , Reiner Krücken , Prashanth Jaikumar

Rapid neutron capture or `$r$-process' nucleosynthesis may be responsible for half the production of heavy elements above iron on the periodic table. Masses are one of the most important nuclear physics ingredients that go into calculations…

Nuclear Theory · Physics 2014-11-17 M. Mumpower , R. Surman , A. Aprahamian

The ENDF/B-VIII.1 library is the newest recommended evaluated nuclear data file by the Cross Section Evaluation Working Group (CSEWG) for use in nuclear science and technology applications, and incorporates advances made in the six years…

Applied Physics · Physics 2026-05-07 G. P. A. Nobre , R. Capote , M. T. Pigni , A. Trkov , C. M. Mattoon , D. Neudecker , D. A. Brown , M. B. Chadwick , A. C. Kahler , N. A. Kleedtke , M. Zerkle , A. I. Hawari , C. W. Chapman , N. C. Fleming , J. L. Wormald , K. Ramić , Y. Danon , N. A. Gibson , P. Brain , M. W. Paris , G. M. Hale , I. J. Thompson , D. P. Barry , I. Stetcu , W. Haeck , A. E. Lovell , M. R. Mumpower , G. Potel , K. Kravvaris , G. Noguere , J. D. McDonnell , A. D. Carlson , M. Dunn , T. Kawano , D. Wiarda , I. Al-Qasir , G. Arbanas , R. Arcilla , B. Beck , D. Bernard , R. Beyer , J. M. Brown , O. Cabellos , R. J. Casperson , Y. Cheng , E. V. Chimanski , R. Coles , M. Cornock , J. Cotchen , J. P. W. Crozier , D. E. Cullen , A. Daskalakis , M. -A. Descalle , D. D. DiJulio , P. Dimitriou , A. C. Dreyfuss , I. Durán , R. Ferrer , T. Gaines , V. Gillette , G. Gert , K. H. Guber , J. D. Haverkamp , M. W. Herman , J. Holmes , M. Hursin , N. Jisrawi , A. R. Junghans , K. J. Kelly , H. I. Kim , K. S. Kim , A. J. Koning , M. Koštál , B. K. Laramee , A. Lauer-Coles , L. Leal , H. Y. Lee , A. M. Lewis , J. Malec , J. I. Márquez Damián , W. J. Marshall , A. Mattera , G. Muhrer , A. Ney , W. E. Ormand , D. K. Parsons , C. M. Percher , V. G. Pronyaev , A. Qteish , S. Quaglioni , M. Rapp , J. J. Ressler , M. Rising , D. Rochman , P. K. Romano , D. Roubtsov , G. Schnabel , M. Schulc , G. J. Siemers , A. A. Sonzogni , P. Talou , J. Thompson , T. H. Trumbull , S. C. van der Marck , M. Vorabbi , C. Wemple , K. A. Wendt , M. White , R. Q. Wright

The focus of the present review is the production of the heaviest elements in nature via the r-process. A correct understanding and modeling requires the knowledge of nuclear properties far from stability and a detailed prescription of the…

Astrophysics · Physics 2009-10-31 K. -L. Kratz , B. Pfeiffer , F. -K. Thielemann , W. B. Walters

Mergers of binary neutron stars and black hole-neutron star binaries are one of the most promising sources for the ground-based gravitational-wave (GW) detectors and also a high-energy astrophysical phenomenon as illustrated by the…

High Energy Astrophysical Phenomena · Physics 2019-08-08 Masaru Shibata , Kenta Hotokezaka

Binary neutron star mergers are promising sources of gravitational waves for ground-based detectors such as Advanced LIGO. Neutron-rich material ejected by these mergers may also be the main source of r-process elements in the Universe,…

High Energy Astrophysical Phenomena · Physics 2017-01-04 Francois Foucart , Evan O'Connor , Luke Roberts , Lawrence E. Kidder , Harald P. Pfeiffer , Mark A. Scheel

In order to explore the consequences of the neutrino irradiation for the supernova r-process nucleosynthesis, we calculate the rates of charged-current and neutral-current neutrino reactions on neutron-rich heavy nuclei, and estimate the…

Nuclear Theory · Physics 2016-09-08 Y. -Z. Qian , W. C. Haxton , K. Langanke , P. Vogel

The nucleosynthetic site of the rapid ($r$) neutron-capture process is currently being debated. The direct detection of the neutron star merger GW170817, through gravitational waves and electromagnetic radiation, has confirmed such events…

Astrophysics of Galaxies · Physics 2020-02-05 Ása Skúladóttir , Stefania Salvadori

The rapid neutron-capture process or r-process is thought to produce the majority of the heavy elements (Z > 30) in extremely metal-poor stars. The same process is also responsible for a significant fraction of the heavy elements in the…

Solar and Stellar Astrophysics · Physics 2017-12-13 Andrew R. Casey , Kevin C. Schlaufman

Predicting nuclear masses is a longstanding challenge. One path forward is machine learning (ML) which trains on experimental data, but can suffer large errors when extrapolating toward neutron-rich species. In nature, such masses shape…

Solar and Stellar Astrophysics · Physics 2025-06-10 Mengke Li , Matthew Mumpower , Nicole Vassh , William Samuel Porter , Rebecca Surman

Stellar nucleosynthesis is an important nuclear physics phenomenon that is responsible for presently observed chemical elements and isotope abundances. It is also one of the corner stone hypotheses that provides basis for our understanding…

Solar and Stellar Astrophysics · Physics 2012-03-09 Boris Pritychenko

Nuclear astrophysics simulations aiming to study the origin of the elements in stars require a multitude of nuclear physics input. Both systematic model dependent and statistically correlated uncertainties need to be considered. An…

Solar and Stellar Astrophysics · Physics 2013-10-18 M. G. Bertolli , F. Herwig , M. Pignatari , T. Kawano

Half of all the elements in the universe heavier than iron were created by rapid neutron capture. The theory for this astrophysical `$r$-process' was worked out six decades ago and requires an enormous neutron flux to make the bulk of these…

We use network calculations of r-process nucleosynthesis to explore the origin of the peak in the solar r-process abundance distribution near nuclear mass number A = 160. The peak is due to a subtle interplay of nuclear deformation and beta…

Astrophysics · Physics 2016-08-30 R. Surman , J. Engel , J. R. Bennett , B. S. Meyer

Neutron star mergers (NSMs) are promising astrophysical sites for the rapid neutron-capture ("$r$-") process, but can their integrated yields explain the majority of heavy-element material in the Galaxy? One method to address this question…

Carbon-enhanced metal-poor (CEMP) stars in the Galactic Halo display enrichments in heavy elements associated with either the s (slow) or the r (rapid) neutron-capture process (e.g., barium and europium respectively), and in some cases they…

Solar and Stellar Astrophysics · Physics 2016-11-15 Melanie Hampel , Richard J. Stancliffe , Maria Lugaro , Bradley S. Meyer

Some of the heavy elements, such as gold and europium (Eu), are almost exclusively formed by the rapid neutron capture process (r-process). However, it is still unclear which astrophysical site between core-collapse supernovae and neutron…

We present the results of fully dynamical r-process network calculations for the ejecta of neutron star mergers (NSMs). The late stages of the inspiral and the final violent coalescence of a neutron star binary have been calculated in…

Astrophysics · Physics 2009-10-31 S. Rosswog , C. Freiburghaus , F. -K. Thielemann
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