首页> 外文期刊>The Astrophysical Journal. Letters >GRAVITATIONAL-WAVE CONSTRAINTS ON THE PROGENITORS OF FAST RADIO BURSTS
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GRAVITATIONAL-WAVE CONSTRAINTS ON THE PROGENITORS OF FAST RADIO BURSTS

机译:重力波约束着快速无线电爆发的前体

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The nature of fast radio bursts (FRBs) remains enigmatic. Highly energetic radio pulses of millisecond duration, FRBs are observed with dispersion measures consistent with an extragalactic source. A variety of models have been proposed to explain their origin. One popular class of theorized FRB progenitor is the coalescence of compact binaries composed of neutron stars and/or black holes. Such coalescence events are strong gravitational-wave emitters. We demonstrate that measurements made by the LIGO and Virgo gravitational-wave observatories can be leveraged to severely constrain the validity of FRB binary coalescence models. Existing measurements constrain the binary black hole rate to approximately 5% of the FRB rate, and results from Advanced LIGO's O1 and O2 observing runs may place similarly strong constraints on the fraction of FRBs due to binary neutron star and neutron star-black hole progenitors.
机译:快速无线电脉冲串(FRB)的性质仍然是个谜。毫秒持续时间的高能无线电脉冲,通过与银河外源一致的色散措施观察到了FRB。已经提出了多种模型来解释其起源。一类流行的理论化FRB祖先是由中子星和/或黑洞组成的紧凑双星的合并。这种聚结事件是强重力波发射器。我们证明,LIGO和处女座引力波天文台的测量结果可以用来严格限制FRB二元合并模型的有效性。现有的测量将双星黑洞率限制在FRB率的5%左右,而高级LIGO的O1和O2观测运行的结果可能会对双星中子星和中子星黑洞祖先产生的FRB分数施加类似的强约束。

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