arXiv:2609.12393·v1·Nuclear Theory
Quantum convolutional neural network for predicting nuclear charge radii
Jinzhe Wu · Jianping Zhao · Tianshuai Shang · Yanhua Lu · Yundong Wang · Jian Li · Haozhao Liang
Abstract
Quantum machine learning has the potential to become a new tool for understanding complex nuclear structures. In this work, we apply a hybrid quantum convolutional neural network (QCNN) to nuclear charge-radius prediction for the first time, aiming to explore the feasibility of quantum machine learning in nuclear-physics data analysis. Based on a classical convolutional neural network (CNN) framework, a small variational quantum convolutional filter is introduced as a quantum feature map to extract local correlations on the nuclear chart. The QCNN shows promising predictive accuracy and training stability, and provides a reliable description of the charge-radius evolution along several representative isotopic chains. These results support further investigation of quantum convolutional architectures for nuclear-structure data analysis.
Comments: 10 pages, 6 figures