A comparative study of the power-law relationship between the pulse width and energy of precursor and main burst

IF 1.8 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
Hui-Ying Deng, Zhaoyang Peng, Jia-Ming Chen, Dan Zhu
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Abstract

Abstract In gamma-ray burst (GRB) prompt emission, there is still no consistent conclusion if the precursor and the main burst share the same origin. In this paper, we try to study the issue based on the relationship between pulse width and energy of the precursor and main burst. We systematically search the light curve data observed by Swift/BAT and Fermi/GBM, and find 13 long bursts with well-structured precursors and main bursts. After fitting the precursor light curve of each different energy channel with the Norris function, we find that there is not only a power-law relationship between precursor width and energy, but also a power-law relationship between the ratio of the rising width to the decaying width and energy. By comparing the relationship between the precursors and the main burst pulses, we find that the distribution of the precursors and the relationship between the power law indices are roughly the same as those of the main burst. In addition, it is found that the precursor width distribution as well as the upper limit of the pulse width ratio do not exceed 1 and are asymmetric, which is also consistent with the main burst. These indicate that the precursor and the main burst are indistinguishable, and the precursor and the main burst may have the same physical origin.
前体与主爆脉冲宽度与能量幂律关系的比较研究
在伽玛射线暴(GRB)瞬发中,前体和主暴是否来自同一起源,目前还没有一致的结论。本文试图从脉冲宽度与脉冲能量的关系出发,对脉冲宽度与脉冲能量的关系进行研究。我们系统地检索了Swift/BAT和Fermi/GBM观测到的光曲线数据,发现了13个具有结构良好的前体和主爆发的长爆发。利用Norris函数拟合各不同能量通道的前驱体光曲线,发现前驱体宽度与能量之间不仅存在幂律关系,而且上升宽度与衰减宽度之比与能量之间也存在幂律关系。通过对比前驱体与主爆脉冲的关系,我们发现前驱体的分布和幂律指标之间的关系与主爆大致相同。此外,发现前驱体宽度分布和脉宽比上限不超过1且不对称,这也与主爆发相一致。说明前驱体与主爆发难以区分,前驱体与主爆发可能具有相同的物理成因。
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来源期刊
Research in Astronomy and Astrophysics
Research in Astronomy and Astrophysics 地学天文-天文与天体物理
CiteScore
3.20
自引率
16.70%
发文量
2599
审稿时长
6.0 months
期刊介绍: Research in Astronomy and Astrophysics (RAA) is an international journal publishing original research papers and reviews across all branches of astronomy and astrophysics, with a particular interest in the following topics: -large-scale structure of universe formation and evolution of galaxies- high-energy and cataclysmic processes in astrophysics- formation and evolution of stars- astrogeodynamics- solar magnetic activity and heliogeospace environments- dynamics of celestial bodies in the solar system and artificial bodies- space observation and exploration- new astronomical techniques and methods
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