A novel fine spectral structure of solar radio bursts with periodic beaded stripes observed by CBSm of CMP-II

A novel fine spectral structure in solar radio bursts has been discovered using the Chashan broadband solar radio spectrometer at meter wavelengths (CBSm), an instrument of the Chinese Meridian Project-Phase II (CMP-II). The structure features periodic narrow-band stripes with a typical recurrence t...

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Published inScience China. Physics, mechanics & astronomy Vol. 68; no. 10; p. 109611
Main Authors Li, Chuanyang, Chen, Yao, Wang, Bing, Zhong, Ze, Tan, Baolin, Ning, Zongjun, Ning, Hao, Kong, Xiangliang, Chang, Shuwang, Tang, Yanke, Gai, Ning, Deng, Li, Yan, Jingye, Yan, Fabao
Format Journal Article
LanguageEnglish
Published Beijing Science China Press 01.10.2025
Springer Nature B.V
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ISSN1674-7348
1869-1927
DOI10.1007/s11433-025-2716-4

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Abstract A novel fine spectral structure in solar radio bursts has been discovered using the Chashan broadband solar radio spectrometer at meter wavelengths (CBSm), an instrument of the Chinese Meridian Project-Phase II (CMP-II). The structure features periodic narrow-band stripes with a typical recurrence time < 1 s (occasionally reaching 8 s), often drifting from high to low frequencies and accompanied by absorptions, with trailing stripes appearing at the end of preceding ones. Some stripes exhibit periodic beaded (or pearl-like) enhancements with a periodicity of ∼0.1 s. The beaded stripes are reported for the first time ever. Data from the DAocheng Radio Telescope (DART) indicate a radio emission brightness temperature exceeding 10 9 K, originating above brightening loops in active region AR 13664. We proposed a novel generation mechanism of the periodic stripes on the basis of the double plasma resonance (DPR) instability, and explained the beaded substructure in terms of modulation by low-frequency magnetohydrodynamic (MHD) waves. The study highlights the CBSm’s capability to detect high-resolution fine spectral structures and offers novel insights into the emission mechanism and source characteristics of solar radio bursts.
AbstractList A novel fine spectral structure in solar radio bursts has been discovered using the Chashan broadband solar radio spectrometer at meter wavelengths (CBSm), an instrument of the Chinese Meridian Project-Phase II (CMP-II). The structure features periodic narrow-band stripes with a typical recurrence time < 1 s (occasionally reaching 8 s), often drifting from high to low frequencies and accompanied by absorptions, with trailing stripes appearing at the end of preceding ones. Some stripes exhibit periodic beaded (or pearl-like) enhancements with a periodicity of ∼0.1 s. The beaded stripes are reported for the first time ever. Data from the DAocheng Radio Telescope (DART) indicate a radio emission brightness temperature exceeding 10 9 K, originating above brightening loops in active region AR 13664. We proposed a novel generation mechanism of the periodic stripes on the basis of the double plasma resonance (DPR) instability, and explained the beaded substructure in terms of modulation by low-frequency magnetohydrodynamic (MHD) waves. The study highlights the CBSm’s capability to detect high-resolution fine spectral structures and offers novel insights into the emission mechanism and source characteristics of solar radio bursts.
A novel fine spectral structure in solar radio bursts has been discovered using the Chashan broadband solar radio spectrometer at meter wavelengths (CBSm), an instrument of the Chinese Meridian Project-Phase II (CMP-II). The structure features periodic narrow-band stripes with a typical recurrence time < 1 s (occasionally reaching 8 s), often drifting from high to low frequencies and accompanied by absorptions, with trailing stripes appearing at the end of preceding ones. Some stripes exhibit periodic beaded (or pearl-like) enhancements with a periodicity of ∼0.1 s. The beaded stripes are reported for the first time ever. Data from the DAocheng Radio Telescope (DART) indicate a radio emission brightness temperature exceeding 109 K, originating above brightening loops in active region AR 13664. We proposed a novel generation mechanism of the periodic stripes on the basis of the double plasma resonance (DPR) instability, and explained the beaded substructure in terms of modulation by low-frequency magnetohydrodynamic (MHD) waves. The study highlights the CBSm’s capability to detect high-resolution fine spectral structures and offers novel insights into the emission mechanism and source characteristics of solar radio bursts.
ArticleNumber 109611
Author Yan, Jingye
Li, Chuanyang
Tang, Yanke
Zhong, Ze
Wang, Bing
Chen, Yao
Ning, Hao
Chang, Shuwang
Gai, Ning
Ning, Zongjun
Deng, Li
Yan, Fabao
Tan, Baolin
Kong, Xiangliang
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  surname: Li
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  organization: College of Physics and Electronic Information, Dezhou University
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  givenname: Yao
  surname: Chen
  fullname: Chen, Yao
  email: yaochen@sdu.edu.cn
  organization: Center for Integrated Research on Space Science, Astronomy, and Physics, Institute of Frontier and Interdisciplinary Science, Shandong University, Institute of Space Sciences, Shandong University
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  givenname: Bing
  surname: Wang
  fullname: Wang, Bing
  organization: Institute of Space Sciences, Shandong University
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  fullname: Zhong, Ze
  organization: Center for Integrated Research on Space Science, Astronomy, and Physics, Institute of Frontier and Interdisciplinary Science, Shandong University
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  surname: Tan
  fullname: Tan, Baolin
  organization: National Astronomical Observatories, Chinese Academy of Sciences
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  fullname: Ning, Zongjun
  organization: Purple Mountain Observatory, Chinese Academy of Science
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  organization: Center for Integrated Research on Space Science, Astronomy, and Physics, Institute of Frontier and Interdisciplinary Science, Shandong University
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  surname: Kong
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  organization: Center for Integrated Research on Space Science, Astronomy, and Physics, Institute of Frontier and Interdisciplinary Science, Shandong University, Institute of Space Sciences, Shandong University
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  surname: Chang
  fullname: Chang, Shuwang
  organization: Laboratory for ElectromAgnetic Detection (LEAD), Institute of Space Science, Shandong University
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  surname: Tang
  fullname: Tang, Yanke
  organization: College of Physics and Electronic Information, Dezhou University
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  organization: College of Physics and Electronic Information, Dezhou University
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  organization: National Space Science Center, Chinese Academy of Sciences
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  givenname: Jingye
  surname: Yan
  fullname: Yan, Jingye
  organization: National Space Science Center, Chinese Academy of Sciences
– sequence: 14
  givenname: Fabao
  surname: Yan
  fullname: Yan, Fabao
  organization: Institute of Space Sciences, Shandong University, Laboratory for ElectromAgnetic Detection (LEAD), Institute of Space Science, Shandong University
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solar radio bursts
fine spectral structures
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Snippet A novel fine spectral structure in solar radio bursts has been discovered using the Chashan broadband solar radio spectrometer at meter wavelengths (CBSm), an...
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StartPage 109611
SubjectTerms Astronomy
Bandwidths
Brightening
Brightness temperature
Broadband
Charged particles
Classical and Continuum Physics
Magnetohydrodynamic waves
Observations and Techniques
Observatories
Physics
Physics and Astronomy
Plasma resonance
Radio emission
Radio telescopes
Science
Solar radio bursts
Wavelengths
Title A novel fine spectral structure of solar radio bursts with periodic beaded stripes observed by CBSm of CMP-II
URI https://link.springer.com/article/10.1007/s11433-025-2716-4
https://www.proquest.com/docview/3235513052
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