典型文献
FAST Observations of an Extremely Active Episode of FRB 20201124A:I.Burst Morphology
文献摘要:
We report the properties of more than 600 bursts(including cluster-bursts)detected from the repeating fast radio burst(FRB)source FRB 20201124A with the Five-hundred-meter Aperture Spherical radio Telescope during an extremely active episode on UTC 2021 September 25-28,in a series of four papers.The observations were carried out in the band of 1.0-1.5 GHz by using the center beam of the L-band 19-beam receiver.We monitored the source in sixteen l hr sessions and one 3 hr session spanning 23 days.All the bursts were detected during the first four days.In this first paper of the series,we perform a detailed morphological study of 624 bursts using the two-dimensional frequency-time"waterfall"plots,with a burst(or cluster-burst)defined as an emission episode during which the adjacent emission peaks have a separation shorter than 400 ms.The duration of a burst is therefore always longer than l ms,with the longest up to more than 120 ms.The emission spectra of the sub-bursts are typically narrow within the observing band with a characteristic width of~277 MHz.The center frequency distribution has a dominant peak at about 1091.9 MHz and a secondary weak peak around 1327.9 MHz.Most bursts show a frequencydownward-drifting pattern.Based on the drifting patterns,we classify the bursts into five main categories:downward drifting(263)bursts,upward drifting(3)bursts,complex(203),no drifting(35)bursts,and no evidence for drifting(121)bursts.Subtypes are introduced based on the emission frequency range in the band(low,middle,high and wide)as well as the number of components in one burst(1,2,or multiple).We measured a varying scintillation bandwidth from about 0.5 MHz at 1.0 GHz to 1.4 MHz at 1.5 GHz with a spectral index of 3.0.
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中图分类号:
作者姓名:
D.J.Zhou;J.L.Han;B.Zhang;K.J.Lee;W.W.Zhu;D.Li;W.C.Jing;W.-Y.Wang;Y.K.Zhang;J.C.Jiang;J.R.Niu;R.Luo;H.Xu;C.F.Zhang;B.J.Wang;J.W.Xu;P.Wang;Z.L.Yang;Y.Feng
作者机构:
National Astronomical Observatories,Chinese Academy of Sciences,Beijing 100101,China;School of Astronomy,University of Chinese Academy of Sciences,Beijing 100049,China;CAS Key Laboratory of FAST,NAOC,Chinese Academy of Sciences,Beijing 100101,China;Department of Physics and Astronomy,University of Nevada,Las Vegas,NV 89154,USA;Kavli Institute for Astronomy and Astrophysics,Peking University,Beijing 100871,China;Department of Astronomy,Peking University,Beijing 100871,China;CSIRO Space and Astronomy,Epping,NSW 1710,Australia;Research Center for Intelligent Computing Platforms,Zhejiang Laboratory,Hangzhou 311100,China
文献出处:
引用格式:
[1]D.J.Zhou;J.L.Han;B.Zhang;K.J.Lee;W.W.Zhu;D.Li;W.C.Jing;W.-Y.Wang;Y.K.Zhang;J.C.Jiang;J.R.Niu;R.Luo;H.Xu;C.F.Zhang;B.J.Wang;J.W.Xu;P.Wang;Z.L.Yang;Y.Feng-.FAST Observations of an Extremely Active Episode of FRB 20201124A:I.Burst Morphology)[J].天文和天体物理学研究,2022(12):54-69
A类:
20201124A,waterfall,frequencydownward,Subtypes
B类:
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AB值:
0.482878
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