PaperPanorama

Nuclear Experiment·nucl-ex

Fri·May 18, 2018

2 papers1 primary·1 cross-listed·reconstructed*

  1. 01*

    IUPAP Report 41 Introduction

    Anthony W. Thomas🇦🇺 · Alexandra Gade🇺🇸 · Cedric Lorce🇫🇷 · Berndt Mueller🇺🇸 · Jens Erler🇲🇽 · Marco Durante🇮🇹 · Hideto En'yo🇯🇵 · Nicolas Alamanos🇫🇷 · Sylvie Leray🇫🇷

    IUPAP Report 41 is a document that gives summary information about the major nuclear physics facilities around the world. It is updated approximately every five years by Working Group 9 of the International Union of Pure and Applied Physics. The introduction to the report gives an overview of the field of nuclear physics and outlines the major questions facing the field. This most recent version of Report 41 has been updated to reflect the state of the field in 2018. The full report can be found at http://www.triumf.info/hosted/iupap/icnp/report41.html

    nucl-ex2 citations
  2. 02*

    Evolution of shell structure in exotic nuclei

    Takaharu Otsuka🇯🇵 · Alexandra Gade🇺🇸 · Olivier Sorlin🇫🇷 · Toshio Suzuki🇯🇵 · Yutaka Utsuno🇯🇵

    The atomic nucleus is a quantum many-body system whose constituent nucleons (protons and neutrons) are subject to complex nucleon-nucleon interactions that include spin- and isospin-dependent components. For stable nuclei, already several decades ago, emerging seemingly regular patterns in some observables could be described successfully within a shell-model picture that results in particularly stable nuclei at certain magic fillings of the shells with protons and/or neutrons: N,Z = 8, 20, 28, 50, 82, 126. However, in short-lived, so-called exotic nuclei or rare isotopes, characterized by a large N/Z asymmetry and located far away from the valley of beta stability on the nuclear chart, these magic numbers, viewed through observables, were shown to change. These changes in the regime of exotic nuclei offer an unprecedented view at the roles of the various components of the nuclear force when theoretical descriptions are confronted with experimental data on exotic nuclei where certain effects are enhanced. This article reviews the driving forces behind shell evolution from a theoretical point of view and connects this to experimental signatures.

    nucl-thnucl-exRMP(2020)·434 citations

* Reconstructed cohort: no mailing for this day survives in the archive. Papers are grouped by their submission times and arXiv's announcement cut-off, assuming announcement without delay; positions follow identifier order. Validated at ~91% exact-day agreement against the archived era.