首页> 外文期刊>Astronomy and astrophysics >Long optical plateau in the afterglow of the short GRB 150424A with extended emission - Evidence for energy injection by a magnetar?
【24h】

Long optical plateau in the afterglow of the short GRB 150424A with extended emission - Evidence for energy injection by a magnetar?

机译:在短grb 150424a的余辉中长光高原,扩展排放 - 磁场能量注射的证据?

获取原文
           

摘要

Context. Short-duration gamma-ray bursts (GRBs) with extended emission form a subclass of short GRBs, comprising about 15% of the short-duration sample. Afterglow detections of short GRBs are also rare (about 30%) because of their lower luminosity. Aims. We present a multiband data set of the short burst with extended emission, GRB 150424A, comprising of GROND observations, complemented with data from Swift /UVOT, Swift /XRT, HST, Keck/LRIS, and data points from the literature. The GRB 150424A afterglow shows an extended plateau phase, lasting about 8 h. The analysis of this unique GRB afterglow might shed light on the understanding of afterglow plateau emission, the nature of which is still under debate. Methods. We present a phenomenological analysis made by applying fireball closure relations and interpret the findings in the context of the fireball model. We discuss the plausibility of a magnetar as a central engine, which would be responsible for additional and prolonged energy injection into the fireball. Results. We find convincing evidence for energy injection into the afterglow of GRB 150424A. We find that a magnetar spin-down as the source for a prolonged energy injection requires that at least 4% of the spin-down energy is converted into radiation.
机译:语境。延长发射的短持续时间伽马射线突发(GRB)形成短GRB的子类,包括约15%的短持续时间样本。由于其较低的亮度,短grbs的余辉检测也罕见(约30%)。目标。我们呈现了具有扩展发射的短脉冲的多频带数据集GRB 150424A,包括Grond观测,与来自文献中的SWIFT / UVOT,SWIFT / XRT,HST,KECK / LRI和数据点的数据相辅相成。 GRB 150424A余辉显示延长的平台相,持续约8小时。对这种独特的GRB余辉的分析可能会阐明对余辉高原排放的理解,其性质仍在辩论中。方法。我们通过应用火球封闭关系进行了一种现象学分析,并在火球模型的背景下解释了发现。我们讨论磁铁作为中央发动机的合理性,这将负责额外和长时间的能量注入火球。结果。我们发现令人信服的证据进入GRB 150424A的余辉。我们发现磁力旋转作为延长能量注射的源,要求至少4%的拆卸能量转化为辐射。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号