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从二进制中子星的合并产生的引力波后可检测到的无线电耀斑
1Raymond and Beverly Sackler School of Physics & Astronomy, Tel Aviv University, Tel Aviv 69978, Israel. udini@wise.tau.ac.il
Nature
|October 4, 2011
概括
中子星的合并会产生引力波,并且可以产生持久的无线电耀斑. 这些耀斑来自外流与周围物质相互作用,为这些宇宙事件提供了可检测的电磁信号.
科学领域:
- 天体物理学 天体物理学
- 引力波天文学 引力波天文学
- 多个信使的天文学
背景情况:
- 中子星合并是引力波的主要来源.
- 这些合并可以启动外流,可能解释短马射线爆发.
- 持久的电磁信号对于确认引力波检测至关重要.
研究的目的:
- 为了研究中子星合并流出的电磁信号.
- 为了确定这些外流是否能产生可检测的无线电耀斑.
- 为了将观察到的无线电瞬态与中子星合并事件联系起来.
主要方法:
- 对相对论输出流与周围介质的相互作用进行了计算.
- 模拟各种频率 (150 MHz,1.4 GHz) 的无线电耀斑发射.
- 分析了不同红移时的耀斑的持续时间和检测能力.
主要成果:
- 轻微相对论的输出产生可检测的无线电火焰 (submillijansky) 在1.4 GHz数周,到红移0.1.1.
- 亚相对论外流产生了可以在150 MHz和1.4 GHz多年来检测到的火焰.
- 无线电瞬态RT 19870422与中子星合并流出预测的特性相匹配.
结论:
- 中子星合并的外流产生可观测的无线电耀斑.
- 这些耀斑为引力波事件提供了潜在的电磁对应物.
- 该模型解释RT 19870422起源于中子星的合并.
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