arXiv · 2512.19235
Identifying Quasi-Periodic Micropulses in Pulsars with FAST Using Convolutional Neural Networks
Abstract
Quasi-periodic MicroPulses (QMP) are quasi-periodic microstructural features manifested in individual pulsar radio pulses, the study of which is crucial for understanding pulsar radiation mechanisms. Manual identification of QMP in large-scale pulsar single-pulse datasets remains highly inefficient. To address this, we propose a Dual-Stage Residual Network (DSR) that achieves automated QMP detection in FAST observational data through joint analysis of single-pulse profiles and their Amplitude Distribution Profiles (ADP), defined as the power spectra of the autocorrelation function derivatives of the microstructure residuals. The model was trained on PSR B1933+16 data from 2019 (10,486 single pulses) and evaluated on manually annotated PSR B1933+16 data from 2020 (9,657 single pulses). DSR achieved 96.10\% recall and 95.85\% precision on the test set. This approach provides an automated pipeline for large-scale, reproducible QMP identification and establishes the foundation for in-depth investigation of their physical mechanisms.
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Shidong Wang, Hui Liu, Ru-Shuang Zhao, Baoqiang Lao, Yong-Kun Zhang, Y. F. Xiao, Pei Wang, Di Li, R. W. Tian, Z. F. Tu, Q. Zhou, Z. J. Zhang, Qijun Zhi, Shijun Dang, Kun Yang. 2025-12-22. Identifying Quasi-Periodic Micropulses in Pulsars with FAST Using Convolutional Neural Networks. https://arxiv.org/abs/2512.19235
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