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Home / Research / Journals / IMP & HIRFL Annual Report / 2022 Annual Report / Theoretical Nuclear Physics

2022 Annual Report

Editorial Committee of IMP & HIRFL Annual Report
Scientific Committee of IMP
Scientific Committee of National Laboratory of Heavy Ion Accelerator, Lanzhou
Contents
Theoretical Nuclear Physics
High Energy Nuclear Physics
Experimental Nuclear Physics and Nuclear Chemistry
Atomic Physics
Interdiscipline
Nuclear Technology, Nuclear Energy and Nuclear Data
Construction and Development of the HIAF Project
Accelerator Physics
Others
Appendices

Theoretical Nuclear Physics

  • Progress of Theoretical Nuclear Research in 2022 at IMP
  • In-medium Nucleon-nucleon Cross Section in Nuclear Matter
  • Probing the Incompressibility of Dense Hadronic Matter near the QCD Phase Transition in Relativistic Heavy-ion Collisions
  • Probing the Symmetry Energy with Strangeness Production
  • Ab initio Calculations for Isospin Symmetry Breaking in Nuclear Systems
  • Transverse Momentum Structure of Proton within the Basis Light-front Quantization Framework
  • Angular Momentum and Generalized Parton Distributions for the Proton with Basis Light-front Quantization
  • Exploring Photon Using Basis Light-front Quantization Approach
  • Sub Coulomb Barrier d+208Pb Scattering in the Time-dependent Basis Function Approach
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