Hyman Scott D, Lazio T Joseph W, Kassim Namir E, Ray Paul S, Markwardt Craig B, Yusef-Zadeh Farhad
Department of Physics and Engineering, Sweet Briar College, Sweet Briar, Virginia 24595, USA.
Nature. 2005 Mar 3;434(7029):50-2. doi: 10.1038/nature03400.
Transient astronomical sources are typically powered by compact objects and usually signify highly explosive or dynamic events. Although high-time-resolution observations are often possible in radio astronomy, they are usually limited to quite narrow fields of view. The dynamic radio sky is therefore poorly sampled, in contrast to the situation in the X-ray and gamma-ray bands in which wide-field instruments routinely detect transient sources. Here we report a transient radio source, GCRT J1745-3009, which was detected during a moderately wide-field monitoring programme of the Galactic Centre region at 0.33 GHz. The characteristics of its bursts are unlike those known for any other class of radio transient. If located in or near the Galactic Centre, its brightness temperature (approximately 10(16) K) and the implied energy density within GCRT J1745-3009 vastly exceed those observed in most other classes of radio astronomical sources, and are consistent with coherent emission processes that are rarely observed. We conclude that it represents a hitherto unknown class of transient radio sources, the first of possibly many new classes that may be discovered by emerging wide-field radio telescopes.
瞬变天文源通常由致密天体提供能量,通常意味着高度爆发性或动态性的事件。尽管在射电天文学中常常能够进行高时间分辨率观测,但这些观测通常局限于相当狭窄的视场。因此,与X射线和伽马射线波段的情况形成对比,在X射线和伽马射线波段中宽视场仪器能够常规地探测到瞬变源,而动态射电天空的采样却很差。在此我们报告一个瞬变射电源,GCRT J1745 - 3009,它是在对银心区域进行的0.33吉赫兹适度宽视场监测计划期间被探测到的。其爆发的特征不同于任何其他类别的射电瞬变源所已知的特征。如果它位于银心或其附近,其亮度温度(约10¹⁶开尔文)以及GCRT J1745 - 3009内部隐含的能量密度大大超过在大多数其他类别的射电天文源中所观测到的,并且与很少被观测到的相干发射过程相一致。我们得出结论,它代表了一类迄今未知的瞬变射电源,可能是众多新类别中的第一个,这些新类别可能会被新兴的宽视场射电望远镜发现。