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Related papers: Nuclear Energy Density Optimization: UNEDF2

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The purpose of this study is threefold: first, to identify a scheme for the determination of the surface energy coefficient a_surf that offers the best compromise between robustness, precision, and numerical efficiency; second, to analyze…

Nuclear Theory · Physics 2018-03-06 R. Jodon , M. Bender , K. Bennaceur , J. Meyer

We demonstrate that a committee of deep neural networks is capable of predicting the ground-state and excited energies of more than 1800 atomic nuclei with an accuracy akin to the one achieved by state-of-the-art nuclear energy density…

Nuclear Theory · Physics 2020-04-29 R. -D. Lasseri , D. Regnier , J. -P. Ebran , A. Penon

A short review of recent results on the global performance of covariant energy density functionals is presented. It is focused on the analysis of the accuracy of the description of physical observables of ground and excited states as well…

Nuclear Theory · Physics 2015-01-20 A. V. Afanasjev , S. E. Agbemava , D. Ray , P. Ring

The data-driven Bayesian model averaging is a rigorous statistical approach to combining multiple models for a unified prediction. Compared with the individual model, it provides more reliable information, especially for problems involving…

Nuclear Theory · Physics 2024-01-19 Mengying Qiu , Bao-Jun Cai , Lie-Wen Chen , Cen-Xi Yuan , Zhen Zhang

Information about the physical properties of astrophysical objects cannot be measured directly but is inferred by interpreting spectroscopic observations in the context of atomic physics calculations. Ratios of emission lines, for example,…

Central collisions induced by high energy radioactive beams can be used as a novel means to obtain crucial information about the high density ({\rm HD}) behaviour of nuclear symmetry energy. This information is critical for understanding…

Nuclear Theory · Physics 2009-11-10 Bao-An Li

The Coulomb exchange and correlation energy density functionals for electron systems are applied to nuclear systems. It is found that the exchange functionals in the generalized gradient approximation provide agreements with the exact-Fock…

Nuclear Theory · Physics 2019-12-09 Tomoya Naito , Ryosuke Akashi , Gianluca Colò , Haozhao Liang , Xavier Roca-Maza

Reliable information on level density and radiative strength functions for the excitation energy region with density of excited states more than 100 levels per 1 MeV and higher can be obtained now only by its model-free extraction from…

Nuclear Experiment · Physics 2007-05-23 V. A. Bondarenko , J. Honzatko , V. A. Khitrov , A. M. Sukhovoj , I. Tomandl

We examine relations among the parameters characterizing the phenomenological equation of state (EOS) of nearly symmetric, uniform nuclear matter near the saturation density by comparing macroscopic calculations of radii and masses of…

Nuclear Theory · Physics 2009-11-07 Kazuhiro Oyamatsu , Kei Iida

To relate constraints from nuclear physics to the tidal deformabilities of neutron stars, we construct a neutron star model that accepts input from a large collection of Skyrme density functions to calculate properties of 1.4 solar-mass…

Nuclear Experiment · Physics 2018-11-13 M. B. Tsang , C. Y. Tsang , P. Danielewicz , W. G. Lynch , F. J. Fattoyev

We present a set of three unified equations of states (EoSs) based on the nuclear energy-density functional (EDF) theory.These EoSs are based on generalized Skyrme forces fitted to essentially all experimental atomic mass data and…

High Energy Astrophysical Phenomena · Physics 2012-07-02 A. F. Fantina , N. Chamel , J. M. Pearson , S. Goriely

We analyze the sensitivity of $\beta$-decay rates in 78 Ni and 100,132 Sn to a correction term in Skyrme energy-density functionals (EDF) which modifies the radial shape of the nucleon effective mass. This correction is added on top of…

Nuclear Theory · Physics 2015-05-29 A. P. Severyukhin , Jérôme Margueron , I. N. Borzov , Nguyen Van Giai

The formation of clusters at sub-saturation densities constitutes an essential feature for a reliable modelization of the nuclear matter equation of state (EoS). Phenomenological models that make use of energy density functionals (EDFs)…

Nuclear Theory · Physics 2022-07-08 S. Burrello , S. Typel

Electric dipole moment (EDM) measurements using paramagnetic molecules have significantly advanced over the last decade. Traditionally, these experiments have been analyzed in terms of the electron EDM. However, paramagnetic molecules are…

High Energy Physics - Phenomenology · Physics 2026-05-20 Wouter Dekens , Jordy de Vries , Lemonia Gialidi , Javier Menéndez , Heleen Mulder , Beatriz Romeo

The nuclear matter parameters define the nuclear equation of state (EoS), they appear as coefficients of expansion around the saturation density of symmetric and asymmetric nuclear matter. We review their correlations with several…

Nuclear Theory · Physics 2021-05-26 B. K. Agrawal , Tuhin Malik , J. N. De , S. K. Samaddar

Covariant density functional theory (CDFT) is a modern theoretical tool for the description of nuclear structure phenomena. The current investigation aims at the global assessment of the accuracy of the description of the ground state…

Nuclear Theory · Physics 2015-06-19 S. E. Agbemava , A. V. Afanasjev , D. Ray , P. Ring

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 KIDS framework for the nuclear equation of state (EoS) and energy density functional (EDF) offers the possibility to explore symmetry-energy (SE) parameters such as J (value at saturation density), L (slope), Ksym (curvature) and so on…

Nuclear Theory · Physics 2021-04-30 Hana Gil , Young-Min Kim , Panagiota Papakonstantinou , Chang Ho Hyun

Recent STAR data on the bulk observables in the energy range of the Beam-Energy Scan Program at the Relativistic Heavy-Ion Collider are analyzed within the model of the three-fluid dynamics (3FD). The simulations are performed with…

Nuclear Theory · Physics 2018-02-21 Yu. B. Ivanov , A. A. Soldatov

Through ensemble learning with multitasking and complex connection neural networks, we aggregated nuclear properties, including ground state charge radii, binding energies, and single-particle state information obtained from the Kohn-Sham…

Nuclear Theory · Physics 2023-10-18 Zu-Xing Yang , Xiao-Hua Fan , Zhi-Pan Li , Haozhao Liang
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