English

Future of Nuclear Fission Theory

Nuclear Theory 2020-11-03 v2

Abstract

There has been much recent interest in nuclear fission, due in part to a new appreciation of its relevance to astrophysics, stability of superheavy elements, and fundamental theory of neutrino interactions. At the same time, there have been important developments on a conceptual and computational level for the theory. The promising new theoretical avenues were the subject of a workshop held at the University of York in October 2019; this report summarises its findings and recommendations.

Keywords

Cite

@article{arxiv.2005.10216,
  title  = {Future of Nuclear Fission Theory},
  author = {Michael Bender and Remi Bernard and George Bertsch and Satoshi Chiba and Jacek Dobaczewski and Noel Dubray and Samuel Giuliani and Kouichi Hagino and Denis Lacroix and Zhipan Li and Piotr Magierski and Joachim Maruhn and Witold Nazarewicz and Junchen Pei and Sophie Peru and Nathalie Pillet and Jorgen Randrup and David Regnier and Paul-Gerhard Reinhard and Luis Robledo and Wouter Ryssens and Jhilam Sadhukhan and Guillaume Scamps and Nicolas Schunck and Cedric Simenel and Janusz Skalski and Ionel Stetcu and Paul Stevenson and Sait Umar and Marc Verriere and Dario Vretenar and Michal Warda and Sven Aberg},
  journal= {arXiv preprint arXiv:2005.10216},
  year   = {2020}
}

Comments

86 LaTeX pages, 3 figures, 331 references, version published as Topical Review in Journal of Physics G