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    Bayesian statistical analysis of 897 pulsar flux density spectra

    Qingzheng Gao1,2, Xiao-Jin Liu1, Zhi-Qiang You3,*, Zheng Li1,†, and Xingjiang Zhu1,‡

    • *Contact author: zhiqiang.you@hnas.ac.cn
    • †Contact author: l.z@bnu.edu.cn
    • ‡Contact author: zhuxj@bnu.edu.cn

    Phys. Rev. D 113, 063007 – Published 3 March, 2026

    DOI: https://doi.org/10.1103/1y28-hzk7

    Abstract

    We present a comprehensive reevaluation of pulsar radio spectra using the largest curated dataset of calibrated flux densities to date, comprising 897 pulsars, and employing a robust Bayesian framework for model comparison alongside frequentist methods. Contrary to the established consensus that pulsar spectra are predominantly simple power laws, our analysis reveals that complex spectral shapes with curvature or breaks are in fact the norm. The broken power law emerges as the most common spectral shape, accounting for 60% of pulsars, while the simple power law describes only 13.5%, with 68.8% of pulsars decisively favoring curved or broken models. We further identify 74 confident gigahertz-peaked spectrum pulsars and demonstrate that millisecond pulsars frequently exhibit spectral curvature. A key finding is that the previously reported dominance of the simple power law was largely a statistical artifact of the frequentist method used in earlier work. These findings substantially revise the prevailing view of pulsar spectra and establish a critical, model-classified foundation for future theoretical work.

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