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Nuclear beta decay rates are an essential ingredient in simulations of the astrophysical r-process. Most of these rates still rely on theoretical modeling. However, modern radioactive ion-beam facilities have allowed to measure beta half…

Nuclear Theory · Physics 2014-05-02 O. L. Caballero , A. Arcones , I. N. Borzov , K. Langanke , G. Martinez-Pinedo

Nucleosynthesis beyond Fe poses additional challenges not encountered when studying astrophysical processes involving light nuclei. Generally higher temperatures and nuclear level densities lead to stronger contributions of transitions on…

Nuclear Experiment · Physics 2022-10-26 T. Rauscher

$^{192}$Pt is produced solely by the slow neutron capture (\textit{s}) nucleosynthesis process and hence an accurate ($n$,$\gamma $) reaction rate for this nuclide would allow its use as an important calibration point near the termination…

Nuclear Experiment · Physics 2015-06-17 P. E. Koehler , K. H. Guber

Reaction measurements on fission products are being planned at both Argonne National Lab and at the Facility for Rare Isotope Beams. These indirect experiments produce specific short-lived nuclei via beta decay, and the subsequent neutron…

Nuclear Theory · Physics 2023-06-21 Oliver Gorton , Calvin Johnson , Jutta Escher

The nuclear level density and $\gamma$-decay strength of $^{192}$Os have been extracted using particle-$\gamma$ coincidence data from the $^{192}$Os($\alpha,\alpha^\prime\gamma$)$^{192}$Os reaction by means of the Oslo method. The level…

The nuclear level density and the $\gamma$-ray strength function have been extracted for $^{89}$Y, using the Oslo Method on $^{89}$Y($p,p' \gamma$)$^{89}$Y coincidence data. The $\gamma$-ray strength function displays a low-energy…

Two new facilities have recently been proposed to measure low energy neutrino-nucleus cross sections, the nu-SNS (Spallation Neutron Source) and low energy beta beams. The former produces neutrinos by pion decay at rest, while the latter…

Nuclear Theory · Physics 2009-11-10 G. C. McLaughlin

The primary aim of experimental nuclear astrophysics is to determine the rates of nuclear reactions taking place in stars in various astrophysical conditions. These reaction rates are important ingredient for understanding the elemental…

Nuclear Experiment · Physics 2019-03-27 Gy. Gyürky , Zs. Fülöp , F. Käppeler , G. G. Kiss , A. Wallner

The rapid neutron capture process (r process) is believed to be responsible for about half of the production of the elements heavier than iron and contributes to abundances of some lighter nuclides as well. A universal pattern of r-process…

High Energy Astrophysical Phenomena · Physics 2019-06-26 T. Kajino , W. Aoki , A. B. Balantekin , R. Diehl , M. A. Famiano , G. J. Mathews

The isotopic abundances of r-process elements in the solar system are traditionally derived as residuals from the subtraction of s-process contributions from total solar abundances. However, the uncertainties in s-process nucleosynthesis --…

Nuclear Experiment · Physics 2026-02-03 C. Domingo-Pardo , C. Lederer-Woods , A. Mengoni

Our understanding of the origin of heavy elements beyond iron relies on the rapid neutron capture process (r-process), which accounts for roughly half of their cosmic abundance. However, the extreme neutron-rich conditions required for the…

High Energy Astrophysical Phenomena · Physics 2025-09-25 Jan Kuske , Takayuki Miyagi , Almudena Arcones , Achim Schwenk

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 rapid neutron capture process (r-process) is thought to be responsible for the creation of more than half of all elements beyond iron. The scientific challenges to understanding the origin of the heavy elements beyond iron lie in both…

Nuclear Theory · Physics 2015-06-12 S. Brett , I. Bentley , N. Paul , R. Surman , A. Aprahamian

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…

This article presents a review about the main CERN n\_TOF contributions to the field of neutron-capture experiments of interest for $s$-process nucleosynthesis studies over the last 25 years, with special focus on the measurement of…

Nuclear Experiment · Physics 2025-02-17 C. Domingo-Pardo , O. Aberle , V. Alcayne , G. Alpar , M. Al Halabi , S. Amaducci , V. Babiano , M. Bacak , J. Balibrea-Correa , J. Bartolomé , A. P. Bernardes , B. Bernardino Gameiro , E. Berthoumieux , R. Beyer , M. Birch , M. Boromiza , D. Bosnar , B. Brusasco , M. Caamaño , A. Cahuzac , F. Calviño , M. Calviani , D. Cano-Ott , A. Casanovas , D. M. Castelluccio , D. Catlett , F. Cerutti , G. Cescutti , E. Chiaveri , G. Claps , P. Colombetti , N. Colonna , P. Console Camprini , G. Cortés , M. A. Cortés-Giraldo , L. Cosentino , S. Cristallo , A. D'Ottavi , G. de la Fuente Rosales , S. F. Dellmann , M. Diakaki , M. Di Castro , A. Di Chicco , M. Dietz , E. Dupont , I. Durán , Z. Eleme , M. Eslami , S. Fargier , B. Fernández-Domínguez , P. Finocchiaro , W. Flanagan , V. Furman , A. Gandhi , F. García-Infantes , A. Gawlik-Ramiega , G. Gervino , S. Gilardoni , E. González-Romero , S. Goula , E. Griesmayer , C. Guerrero , F. Gunsing , C. Gustavino , J. Heyse , W. Hillman , D. G. Jenkins , E. Jericha , A. Junghans , Y. Kadi , K. Kaperoni , I. Kelly , M. Kokkoris , Y. Kopatch , M. Krtička , N. Kyritsis , C. Lederer-Woods , J. Lerendegui-Marco , A. Manna , T. Martínez , M. Martínez-Cañada , A. Masi , C. Massimi , P. Mastinu , M. Mastromarco , E. A. Maugeri , A. Mazzone , E. Mendoza , A. Mengoni , V. Michalopoulou , P. M. Milazzo , J. Moldenhauer , R. Mucciola , E. Musacchio González , A. Musumarra , A. Negret , E. Odusina , D. Papanikolaou , N. Patronis , J. A. Pavón-Rodríguez , M. G. Pellegriti , P. Pérez-Maroto , A. Pérez de Rada Fiol , G. Perfetto , J. Perkowski , C. Petrone , N. Pieretti , L. Piersanti , E. Pirovano , I. Porras , J. Praena , J. M. Quesada , R. Reifarth , D. Rochman , Y. Romanets , A. Rooney , G. Rovira , C. Rubbia , A. Sánchez-Caballero , R. N. Sahoo , D. Scarpa , P. Schillebeeckx , A. G. Smith , N. V. Sosnin , M. Spelta , M. E. Stamati , K. Stasiak , G. Tagliente , A. Tarifeño-Saldivia , D. Tarrío , P. Torres-Sánchez , S. Tosi , G. Tsiledakis , S. Valenta , P. Vaz , G. Vecchio , D. Vescovi , V. Vlachoudis , R. Vlastou , A. Wallner , C. Weiss , P. J. Woods , T. Wright , R. Wu , P. Žugec , The n\_TOF Collaboration

A rudimentary calculation is employed to evaluate the possible effects of beta- decays of excited-state nuclei on the astrophysical r-process. Single-particle levels calculated with the FRDM are adapted to the calculation of beta-decay…

Astrophysics · Physics 2010-11-23 M. A. Famiano , R. N. Boyd , T. Kajino , K. Otsuki , M. Terasawa , G. J. Mathews

The relation between the neutron background in neutron capture measurements and the neutron sensitivity related to the experimental setup is examined. It is pointed out that a proper estimate of the neutron background may only be obtained…

Nuclear Experiment · Physics 2016-05-03 P. Žugec , D. Bosnar , N. Colonna , F. Gunsing

We investigate nuclear reactions and feedback in hyperaccreting neutron star environments, considering accretion rates in the range 0.3 - $3\times10^4$ $M_\odot$ yr$^{-1}$, typical of short-period compact object binaries in common…

High Energy Astrophysical Phenomena · Physics 2025-11-25 Peter Anninos , Matthew Portman , Scott Carmichael , Robert Hoffman , Andre Sieverding

The neutron capture cross section for $^{90}Zr(n, \gamma)$ has recently been determined using surrogate $^{92}Zr(p, d\gamma)$ data and nuclear reaction theory. That work employed an approximate fitting method based on Bayesian Monte Carlo…

Nuclear Theory · Physics 2022-08-04 Oliver Gorton , Jutta E. Escher

Beta-decay rates for spherical neutron-rich r-process waiting-point nuclei are calculated within a fully self-consistent Quasiparticle Random-Phase Approximation, formulated in the Hartree-Fock-Bogolyubov canonical single-particle basis.…

Nuclear Theory · Physics 2009-10-31 J. Engel , M. Bender , J. Dobaczewski , W. Nazarewicz , R. Surman