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A PHOTOMETRIC REDSHIFT OF z ~ 9.4 FOR GRB 090429B

机译:GRB 090429B的z〜9.4的光度折光

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Gamma-ray bursts (GRBs) serve as powerful probes of the early universe, with their luminous afterglows revealing the locations and physical properties of star-forming galaxies at the highest redshifts, and potentially locating first-generation (Population III) stars. Since GRB afterglows have intrinsically very simple spectra, they allow robust redshifts from low signal-to-noise spectroscopy, or photometry. Here we present a photometric redshift of z ~ 9.4 for the Swift detected GRB?090429B based on deep observations with Gemini-North, the Very Large Telescope, and the GRB Optical and Near-infrared Detector. Assuming a Small Magellanic Cloud dust law (which has been found in a majority of GRB sight lines), the 90% likelihood range for the redshift is 9.06 z 9.52, although there is a low-probability tail toward somewhat lower redshifts. Adopting Milky Way or Large Magellanic Cloud dust laws leads to very similar conclusions, while a Maiolino law does allow somewhat lower redshift solutions, though in all cases the most likely redshift is found to be z 7. The non-detection of the host galaxy to deep limits (Y(AB) ~ 28, which would correspond roughly to 0.001L* at z = 1) in our late-time optical and infrared observations with the Hubble Space Telescope strongly supports the extreme-redshift origin of GRB?090429B, since we would expect to have detected any low-z galaxy, even if it were highly dusty. Finally, the energetics of GRB 090429B are comparable to those of other GRBs and suggest that its progenitor is not greatly different from those of lower redshift bursts.
机译:伽玛射线爆发(GRB)是早期宇宙的有力探测,其发光的余辉揭示了红移最高的恒星形成星系的位置和物理性质,并有可能定位了第一代(人口III)恒星。由于GRB余辉本质上具有非常简单的光谱,因此它们允许从低信噪比光谱或光度法进行稳健的红移。在这里,我们基于双子北,超大型望远镜以及GRB光学和近红外探测器的深入观测,给出了Swift探测到的GRB?090429B的z〜9.4的光度红移。假设麦哲伦云尘埃定律较小(在大多数GRB视线中都已发现),尽管存在低概率的尾巴,但红移的可能性较小,其90%的可能性为9.06 7。未发现宿主星系哈勃太空望远镜在后期光学和红外观测中的最大极限(Y(AB)〜28,在z = 1时大约相当于0.001L *),强烈支持GRB?090429B的极端红移起源,因为我们希望能够检测到任何低Z星系,即使它尘土飞扬。最后,GRB 090429B的能量学与其他GRB的能量学相当,这表明其祖先与较低的红移爆发没有太大区别。
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