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Radio, Sub-mm, and X-Ray Studies of Gamma-Ray Burst Host Galaxies

机译:伽马射线爆发宿主星系的无线电,亚毫米和X射线研究

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The study of gamma-ray burst (GRB) host galaxies in the radio, sub-mm, and X-ray wavelength regimes began only recently, in contrast to optical studies. This is mainly due to the long timescale on which the radio afterglow emission decays, and to the intrinsic faintness of radio emission from star-forming galaxies at z ~ 1, as well as source confusion in sub-mm observations; X-ray observations of GRB hosts have simply not been attempted yet. Despite these difficulties, we have recently made the first detections of radio and sub-mm emission from the host galaxies of GRB 980703 and GRB 010222, respectively, using the VLA and the SCUBA instrument on JCMT. In both cases we find that the inferred star formation rates (~ 500 M_☉) and bolometric luminosities (few x 10~(12) L_☉) indicate that these galaxies are possibly analogous to the local population of Ultra-Luminous Infrared Galaxies (ULIRGs) undergoing a starburst. However, there is a modest probability that the observed emission is due to AGN activity rather than star formation, thus requiring observations with Chandra or XMM. The sample of GRB hosts offers a number of unique advantages to the broader question of the evolution of galaxies and star formation from high redshift to the present time since: (ⅰ) GRBs trace massive stars, (ⅱ) are detectable to high redshifts, and (ⅲ) have immense dust penetrating power. Therefore, radio/sub-mm/X-ray observations of GRB hosts can potentially provide crucial information both on the nature of the GRB host galaxies, and on the history of star formation.
机译:与光学研究相反,对射电,亚毫米和X射线波长范围内的伽马射线爆发(GRB)宿主星系的研究仅在最近才开始。这主要是由于无线电余辉发射衰减的时间较长,并且由于z〜1处恒星形成星系的无线电发射固有的微弱性,以及亚毫米观测中的源混淆。尚未尝试对GRB主机进行X射线观察。尽管存在这些困难,我们最近还是使用JCMT上的VLA和SCUBA仪器首次分别检测了GRB 980703和GRB 010222主星系的无线电和亚毫米发射。在这两种情况下,我们都发现推断的恒星形成率(〜500M_☉)和辐射热度(几x 10〜(12)L_☉)表明这些星系可能类似于当地的超发光红外星系(ULIRG) )正在爆炸。但是,观测到的发射是由AGN活性而不是恒星形成引起的可能性很小,因此需要使用Chandra或XMM进行观测。 GRB宿主的样本为银河系和恒星形成从高红移到现在这一更广泛的问题提供了许多独特的优势,因为:(ⅰ)GRB跟踪大质量恒星,(ⅱ)可以检测到高红移,并且(ⅲ)具有极强的灰尘穿透力。因此,对GRB宿主的无线电/亚毫米/ X射线观测可能提供有关GRB宿主星系的性质以及恒星形成历史的重要信息。

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