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Discovery of an exceptionally bright giant arc at

机译:发现一个异常明亮的巨型弧

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As part of an all-sky follow-up of the Planck catalogue of Sunyaev-Zeldovich (SZ) cluster candidates detected in the first 14 months of data, we are observing cluster candidates in the southern sky in the optical imaging and spectroscopy through an ESO Large Programme. Inspection of ESO New Technology Telescope (NTT) R -and z -band imaging data from our programme has revealed an unusually large and bright arc in the field of PSZ1?G311.65 ? 18.48. We establish the basic photometric and morphological properties of the arc and provide conclusive evidence for the gravitational lensing nature of this object. Guided by the NTT images, we have obtained a long-slit spectrum with IMACS on the Magellan-I Baade Telescope, covering a part of the arc and the brightest cluster galaxy of PSZ1?G311.65 ? 18.48. Our imaging data confirm the presence of a galaxy cluster coinciding (within 0.?6) with the position of the Planck SZ source. The arc is separated by ~30″ from the brightest cluster galaxy, which closely coincides with the center of curvature of the arc. A photometric analysis yields integrated (Vega) magnitudes of ( R,z,J, K _(s)) = (17.82,17.38,16.75,15.43) for the arc, more than one magnitude brighter than any previously known lensed arc at z ~ 2 –3. The arc is a vigorously star-forming galaxy at z = 2.369 , while the Planck SZ cluster lens is at z = 0.443 .Even when allowing for lensing magnifications as high as μ = 100 still leads to the conclusion that the source galaxy is among the intrinsically most luminous normal (i.e., non-AGN) galaxies known at z ~ 2 –3.
机译:作为在前14个月的数据中检测到的Sunyaev-Zeldovich(SZ)聚类候选物的普朗克目录的全天候跟踪的一部分,我们正在通过ESO观察光学成像和光谱学中南部天空中的聚类候选物大型程序。检查我们程序中的ESO新技术望远镜(NTT)的R和z波段成像数据后,发现PSZ1?G311.65?领域中出现了异常大而明亮的电弧。 18.48。我们建立了电弧的基本光度学和形态学特性,并为该物体的引力透镜性质提供了确凿的证据。在NTT图像的引导下,我们通过麦哲伦一世(Magellan-I)Baade望远镜的IMACS获得了一个长缝光谱,覆盖了部分弧和PSZ1?G311.65?的最亮星团。 18.48。我们的成像数据证实了星系团的存在与普朗克SZ源的位置重合(在0.?6以内)。弧与最亮的星系星团相距约30英寸,该星团与弧的曲率中心重合。光度分析可得出弧的(R,z,J,K_(s))=(17.82,17.38,16.75,15.43)的积分(Vega)量级,比z上任何已知的透镜弧光亮一个级以上〜2 –3。在z = 2.369时,弧是强烈的恒星形成星系,而在普朗克SZ簇透镜处,z = 0.443。即使允许将镜头放大倍数提高到μ= 100,仍然可以得出结论:源星系在本质上是z〜2 –3已知的大多数发光正常(即非AGN)星系。

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