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Chromatic periodic activity down to 120 megahertz in a fast radio burst

机译:在快速的无线电爆裂中将彩色周期性活动降至120兆赫兹

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摘要

Fast radio bursts (FRBs) are extragalactic astrophysical transients(1) whose brightness requires emitters that are highly energetic yet compact enough to produce the short, millisecond-duration bursts. FRBs have thus far been detected at frequencies from 8 gigahertz (ref. (2)) down to 300 megahertz (ref. (3)), but lower-frequency emission has remained elusive. Some FRBs repeat(4-6), and one of the most frequently detected, FRB 20180916B(7), has a periodicity cycle of 16.35 days (ref. (8)). Using simultaneous radio data spanning a wide range of wavelengths (a factor of more than 10), here we show that FRB 20180916B emits down to 120 megahertz, and that its activity window is frequency dependent (that is, chromatic). The window is both narrower and earlier at higher frequencies. Binary wind interaction models predict a wider window at higher frequencies, the opposite of our observations. Our full-cycle coverage shows that the 16.3-day periodicity is not aliased. We establish that low-frequency FRB emission can escape the local medium. For bursts of the same fluence, FRB 20180916B is more active below 200 megahertz than at 1.4 gigahertz. Combining our results with previous upper limits on the all-sky FRB rate at 150 megahertz, we find there are 3-450 FRBs in the sky per day above 50 Jy ms. Our chromatic results strongly disfavour scenarios in which absorption from strong stellar winds causes FRB periodicity. We demonstrate that some FRBs are found in 'clean' environments that do not absorb or scatter low-frequency radiation.The fast radio burst FRB 20180916B repeats with a periodicity of 16 days, and is now found to emit down to a frequency of 120 MHz, much lower than previously observed.
机译:快速的无线电突发(FRB)是紫外线的天体物理瞬变(1),其亮度需要高度充满活力但足够紧凑的发射器以产生短,毫秒持续时间突发。到目前为止,FRBS已经在8 Gigahertz(参考文献(2))下降到300 Megahertz(参考文献(3)),但较低频率排放仍然难以捉摸。一些FRB重复(4-6),并且最常检测到的FRB 20180916b(7)中的一个,周期周期为16.35天(参考文献(8))。使用跨越广泛波长的同时无线电数据(超过10个以上),这里我们显示FRB 20180916B发射到120 MegaHerTZ,并且其活动窗口是频率依赖(即,色度)。窗口在较高频率下均更窄。二元风相互作用模型预测较高频率的更广泛的窗口,与我们的观察结果相反。我们的全循环覆盖显示,16.3天的周期性并不别名。我们建立了低频FRB排放可以逃离本地媒体。对于相同流量的突发,FRB 20180916B比1.4 GigaHertz更高的200mmgahertz。将我们的结果与之前的150 Megahertz的全天FRB率相结合,我们发现每天3-450 FRB在50 JY MS以上。我们的彩色结果强烈地脱离了强烈的恒星风的吸收,导致FRB周期性。我们证明了一些FRB在不吸收或散射低频辐射的“清洁”环境中。快速无线电突发FRB 20180916B重复16天的周期性,现在发现将发出120 MHz的频率。 ,远远低于先前观察到的。

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  • 来源
    《Nature 》 |2021年第7873期| 505-508| 共4页
  • 作者单位

    Univ Amsterdam Anton Pannekoek Inst Amsterdam Netherlands|Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Univ Amsterdam Anton Pannekoek Inst Amsterdam Netherlands|Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands|CALTECH Cahill Ctr Astron Pasadena CA USA;

    Univ Amsterdam Anton Pannekoek Inst Amsterdam Netherlands|Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Univ Amsterdam Anton Pannekoek Inst Amsterdam Netherlands|Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands|Netherlands Sci Ctr Amsterdam Netherlands;

    Univ Amsterdam Anton Pannekoek Inst Amsterdam Netherlands;

    NYU Abu Dhabi U Arab Emirates|NYU Ctr Astro Particle Planetary Phys CAP Abu Dhabi U Arab Emirates;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Sci Ctr Amsterdam Netherlands;

    Univ Amsterdam Anton Pannekoek Inst Amsterdam Netherlands|Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Sci Ctr Amsterdam Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands|Kapteyn Astron Inst Groningen Netherlands;

    Astronom Inst Ruhr Univ Bochum AIRUB Bochum Germany;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands|Kapteyn Astron Inst Groningen Netherlands|Univ Cape Town Dept Astron Rondebosch South Africa;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands|Kapteyn Astron Inst Groningen Netherlands;

    Kapteyn Astron Inst Groningen Netherlands;

    Chalmers Univ Technol Dept Elect Engn Gothenburg Sweden;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands|Lebedev Phys Inst Astro Space Ctr Moscow Russia;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Virginia Polytech Inst & State Univ Dept Phys Blacksburg VA USA;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands|Australia Telescope Natl Facil CSIRO Astron & Space Sci Epping NSW Australia|Univ Sydney Sydney Inst Astron Sch Phys Sydney NSW Australia;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands|Kapteyn Astron Inst Groningen Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

    Netherlands Inst Radio Astron ASTRON Dwingeloo Netherlands;

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