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Detectable radio flares following gravitational waves from mergers of binary neutron stars

机译:双星中子星合并产生的引力波产生的可探测无线电耀斑

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摘要

Mergers of neutron-stareutron-star binaries are strong sources of gravitational waves. They can also launch subrelativistic and mildly relativistic outflows and are often assumed to be the sources of short γ-ray bursts. An electromagnetic signature that persisted for weeks to months after the event would strengthen any future claim of a detection of gravitational waves. Here we present results of calculations showing that the interaction of mildly relativistic outflows with the surrounding medium produces radio flares with peak emission at 1.4 gigahertz that persist at detectable (submillijansky) levels for weeks, out to a redshift of 0.1. Slower subrelativistic outflows produce flares detectable for years at 150 megahertz, as well as at 1.4 gigahertz, from slightly shorter distances. The radio transient RT 19870422 (ref. 11) has the properties predicted by our model, and its most probable origin is the merger of a compact neutron-stareutron-star binary. The lack of radio detections usually associated with short γ-ray bursts does not constrain the radio transients that we discuss here (from mildly relativistic and subrelativistic outflows) because short γ-ray burst redshifts are typically >0.1 and the appropriate timescales (longer than weeks) have not been sampled.
机译:中子星/中子星双星的合并是引力波的重要来源。它们还可能引发亚相对论和轻度相对论外流,通常被认为是短γ射线爆发的来源。事件发生后持续数周至数月的电磁信号将增强未来对重力波探测的要求。在这里,我们提供的计算结果表明,相对论外流与周围介质的相互作用会产生无线电耀斑,其峰值发射为1.4 GHz,并在可检测的(submillijansky)水平上持续数周,直至红移0.1。相对论相对较慢的流出会在短短的距离内产生150兆赫兹和1.4吉赫兹可观测到的耀斑。无线电瞬变RT 19870422(参考文献11)具有我们模型所预测的特性,其最可能的起源是紧凑型中子星/中子星双星的合并。缺少通常与短γ射线猝发相关的无线电检测并没有限制我们在这里讨论的无线电瞬变(来自相对论和次相对论外流),因为短γ射线猝发的红移通常大于0.1,并且具有适当的时标(超过几周) )尚未采样。

著录项

  • 来源
    《Nature》 |2011年第7367期|p.82-84|共3页
  • 作者

    Ehud Nakar; Tsvi Piran;

  • 作者单位

    Raymond and Beverly Sackler School of Physics & Astronomy, Tel Aviv University, Tel Aviv 69978, Israel;

    Racah Institute of Physics, The Hebrew University, Jerusalem 91904, Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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