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相关论文: Measurements of r-process nuclei

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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…

天体物理学 · 物理学 2009-10-31 K. -L. Kratz , B. Pfeiffer , F. -K. Thielemann , W. B. Walters

Current models for the $r$ process are summarized with an emphasis on the key constraints from both nuclear physics measurements and astronomical observations. In particular, we analyze the importance of nuclear physics input such as…

核理论 · 物理学 2017-05-31 Toshitaka Kajino , Grant J. Mathews

The astrophysical rapid neutron capture process or `$r$ process' of nucleosynthesis is believed to be responsible for the production of approximately half the heavy element abundances found in nature. This multifaceted problem remains one…

核理论 · 物理学 2016-01-20 M. R. Mumpower , R. Surman , G. C. McLaughlin , A. Aprahamian

Several nuclear physics issues essential to understanding the r-process are discussed. These include validity of the waiting-point approximation, strength of closed neutron shells in neutron-rich nuclei far from stability, and effects of…

核理论 · 物理学 2009-11-10 Y. -Z. Qian

The r-process involves neutron-rich nuclei far off stability for which no experimental cross sections are known. Therefore, one has to rely on theory which might be prone to considerable uncertainties far off stability. To investigate the…

天体物理学 · 物理学 2007-05-23 T. Rauscher

The r-process, or the rapid neutron-capture process, of stellar nucleosynthesis is called for to explain the production of the stable (and some long-lived radioactive) neutron-rich nuclides heavier than iron that are observed in stars of…

天体物理学 · 物理学 2008-11-26 M. Arnould , S. Goriely , K. Takahashi

The open question of where, when, and how the heavy elements beyond iron enrich our Universe has triggered a new era in nuclear physics studies.\ Of all the relevant nuclear physics inputs, the mass of very neutron-rich nuclides is a key…

核实验 · 物理学 2015-08-05 B. H. Sun , Yu. A. Litvinov , I. Tanihata , Y. H. Zhang

The r-process involves neutron-rich nuclei far off stability for which no experimental cross sections are known. Therefore, one has to rely on theory. The difficulties in the predictions are briefly addressed. To investigate the impact of…

天体物理学 · 物理学 2015-06-24 T. Rauscher

Nuclear masses play a fundamental role in understanding how the heaviest elements in the Universe are created in the $r$-process. We predict $r$-process nucleosynthesis yields using neutron capture and photodissociation rates that are based…

核理论 · 物理学 2016-03-30 Dirk Martin , Almudena Arcones , Witold Nazarewicz , Erik Olsen

I discuss the recent progress in our understanding of nucleosynthesis via rapid neutron capture, the r-process, based on meteoritic data for the early solar system and observations of stars at low metallicities. At present, all data require…

天体物理学 · 物理学 2009-10-31 Yong-Zhong Qian

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…

核理论 · 物理学 2015-06-12 S. Brett , I. Bentley , N. Paul , R. Surman , A. Aprahamian

An update on astrophysical models for nucleosynthesis via rapid neutron capture, the r process, is given. A neutrino-induced r process in supernova helium shells may have operated up to metallicities of ~10^-3 times the solar value. Another…

太阳与恒星天体物理 · 物理学 2015-06-03 Yong-Zhong Qian

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…

核实验 · 物理学 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

About half of the heavy elements in the Solar System were created by rapid neutron capture, or r-process, nucleosynthesis. In the r-process, heavy elements are built up via a sequence of neutron captures and beta decays in which an intense…

核理论 · 物理学 2017-08-23 R. Surman , M. Mumpower , J. Cass , A. Aprahamian

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…

高能天体物理现象 · 物理学 2019-06-26 T. Kajino , W. Aoki , A. B. Balantekin , R. Diehl , M. A. Famiano , G. J. Mathews

This is an exciting time for the study of r-process nucleosynthesis. Recently, a neutron star merger GW170817 was observed in extraordinary detail with gravitational waves and electromagnetic radiation from radio to gamma rays. The very red…

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…

高能天体物理现象 · 物理学 2025-09-25 Jan Kuske , Takayuki Miyagi , Almudena Arcones , Achim Schwenk

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 --…

核实验 · 物理学 2026-02-03 C. Domingo-Pardo , C. Lederer-Woods , A. Mengoni

It is proposed here to investigate three major properties of the nuclear force that influence the amplitude of shell gaps, the nuclear binding energies as well as the nuclear $\beta$-decay properties far from stability, that are all key…

核实验 · 物理学 2017-03-29 O. Sorlin

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…

核理论 · 物理学 2022-12-06 S. Goriely , A. Choplin , W. Ryssens , I. Kullmann
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